9FMD

Integrative model of the human post-catalytic spliceosome (P-complex)


Domain Annotation: SCOP2 Classification SCOP2 Database Homepage

ChainsTypeFamily Name Domain Identifier Family IdentifierProvenance Source (Version)
J [auth 8]SCOP2B SuperfamilyRNA-binding domain, RBD 8042953 3000110 SCOP2B (2022-06-29)
K [auth 9]SCOP2B SuperfamilyMago nashi protein 8042952 3000634 SCOP2B (2022-06-29)
L [auth A]SCOP2B SuperfamilyRibonuclease H-like 8041105 3000143 SCOP2B (2022-06-29)
L [auth A]SCOP2B SuperfamilyJAB1/MPN domain-like 8053277 3001105 SCOP2B (2022-06-29)
M [auth B]SCOP2B SuperfamilyE set domains 8055093 3000070 SCOP2B (2022-06-29)
M [auth B]SCOP2B SuperfamilyBrl domain-like 8036193 3000115 SCOP2B (2022-06-29)
X [auth L]SCOP2B SuperfamilyHomeodomain-like 8089608 3000001 SCOP2B (2022-06-29)
BA [auth O]SCOP2B SuperfamilyRNA-binding domain, RBD 8064957 3000110 SCOP2B (2022-06-29)
DA [auth Q]SCOP2B SuperfamilyUpf1 beta-barrel domain-like 8090870 3002168 SCOP2B (2022-06-29)
DA [auth Q]SCOP2B SuperfamilyRecA-like P-loop NTPases 8090871 3002019 SCOP2B (2022-06-29)
DA [auth Q]SCOP2B SuperfamilyRecA-like P-loop NTPases 8090872 3002019 SCOP2B (2022-06-29)
DA [auth Q]SCOP2B SuperfamilyARM repeat-like 8090869 3000116 SCOP2B (2022-06-29)
EA [auth R]SCOP2B SuperfamilyPre-mRNA-processing protein 45-like 8092740 3002618 SCOP2B (2022-06-29)
FA [auth S]SCOP2B SuperfamilyCyclophilin-like 8033930 3000168 SCOP2B (2022-06-29)
UA [auth h]SCOP2B SuperfamilySm-like ribonucleoproteins 8041751 3000419 SCOP2B (2022-06-29)
NA [auth a]SCOP2B SuperfamilySm-like ribonucleoproteins 8041751 3000419 SCOP2B (2022-06-29)
OA [auth b]SCOP2B SuperfamilySm-like ribonucleoproteins 8041747 3000419 SCOP2B (2022-06-29)
VA [auth i]SCOP2B SuperfamilySm-like ribonucleoproteins 8041747 3000419 SCOP2B (2022-06-29)
WA [auth j]SCOP2B SuperfamilySm-like ribonucleoproteins 8041748 3000419 SCOP2B (2022-06-29)
PA [auth c]SCOP2B SuperfamilySm-like ribonucleoproteins 8041748 3000419 SCOP2B (2022-06-29)
QA [auth d]SCOP2B SuperfamilySm-like ribonucleoproteins 8041749 3000419 SCOP2B (2022-06-29)
XA [auth k]SCOP2B SuperfamilySm-like ribonucleoproteins 8041749 3000419 SCOP2B (2022-06-29)
YA [auth l]SCOP2B SuperfamilySm-like ribonucleoproteins 8063476 3000419 SCOP2B (2022-06-29)
RA [auth e]SCOP2B SuperfamilySm-like ribonucleoproteins 8063476 3000419 SCOP2B (2022-06-29)
SA [auth f]SCOP2B SuperfamilySm-like ribonucleoproteins 8063452 3000419 SCOP2B (2022-06-29)
ZA [auth m]SCOP2B SuperfamilySm-like ribonucleoproteins 8063452 3000419 SCOP2B (2022-06-29)
AB [auth n]SCOP2B SuperfamilySm-like ribonucleoproteins 8063468 3000419 SCOP2B (2022-06-29)
TA [auth g]SCOP2B SuperfamilySm-like ribonucleoproteins 8063468 3000419 SCOP2B (2022-06-29)
BB [auth o]SCOP2B SuperfamilyL domain-like 8043993 3001010 SCOP2B (2022-06-29)
CB [auth p]SCOP2B SuperfamilyRNA-binding domain, RBD 8035327 3000110 SCOP2B (2022-06-29)
HB [auth w]SCOP2B SuperfamilyCyclophilin-like 8036491 3000168 SCOP2B (2022-06-29)
JB [auth y]SCOP2B SuperfamilyRNA-binding domain, RBD 8039202 3000110 SCOP2B (2022-06-29)
I [auth 7]SCOP2B SuperfamilyRecA-like P-loop NTPases 8042951 3002019 SCOP2B (2022-06-29)
I [auth 7]SCOP2B SuperfamilyRecA-like P-loop NTPases 8042950 3002019 SCOP2B (2022-06-29)

Protein Family Annotation Pfam Database Homepage

ChainsAccessionNameDescriptionCommentsSource
W [auth K]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
A [auth 1]PF06658Protein of unknown function (DUF1168) (DUF1168)Protein of unknown function (DUF1168)- Family
J [auth 8]PF00076RNA recognition motif (RRM_1)RNA recognition motifThe RRM motif (a.k.a. RRM, RBD, or RNP domain) is probably diagnostic of an RNA binding protein. RRMs are found in a variety of RNA binding proteins, including various hnRNP proteins, proteins implicated in regulation of alternative splicing, and pro ...The RRM motif (a.k.a. RRM, RBD, or RNP domain) is probably diagnostic of an RNA binding protein. RRMs are found in a variety of RNA binding proteins, including various hnRNP proteins, proteins implicated in regulation of alternative splicing, and protein components of snRNPs. The motif also appears in a few single stranded DNA binding proteins. The RRM structure consists of four strands and two helices arranged in an alpha/beta sandwich, with a third helix present during RNA binding in some cases The C-terminal beta strand (4th strand) and final helix are hard to align and have been omitted in the SEED alignment The LA proteins (Swiss:P05455) have an N terminal rrm which is included in the seed. There is a second region towards the C terminus that has some features characteristic of a rrm but does not appear to have the important structural core of a rrm. The LA proteins (Swiss:P05455) are one of the main autoantigens in Systemic lupus erythematosus (SLE), an autoimmune disease.
Domain
K [auth 9]PF02792Mago nashi protein (Mago_nashi)Mago nashi protein- Family
L [auth A]PF10597U5-snRNA binding site 2 of PrP8 (U5_2-snRNA_bdg)U5-snRNA binding site 2 of PrP8The essential spliceosomal protein Prp8 interacts with U5 and U6 snRNAs and with specific pre-mRNA sequences that participate in catalysis [1]. This close association with crucial RNA sequences, together with extensive genetic evidence, suggests that ...The essential spliceosomal protein Prp8 interacts with U5 and U6 snRNAs and with specific pre-mRNA sequences that participate in catalysis [1]. This close association with crucial RNA sequences, together with extensive genetic evidence, suggests that Prp8 could directly affect the function of the catalytic core, perhaps acting as a splicing cofactor [2].
Domain
L [auth A]PF10598RNA recognition motif of the spliceosomal PrP8 (RRM_4)RNA recognition motif of the spliceosomal PrP8The large RNA-protein complex of the spliceosome catalyses pre-mRNA splicing. One of the most conserved core proteins is PrP8 which occupies a central position in the catalytic core of the spliceosome, and has been implicated in several crucial molec ...The large RNA-protein complex of the spliceosome catalyses pre-mRNA splicing. One of the most conserved core proteins is PrP8 which occupies a central position in the catalytic core of the spliceosome, and has been implicated in several crucial molecular rearrangements that occur there, and has recently come under the spotlight for its role in the inherited human disease, Retinitis Pigmentosa [1]. The RNA-recognition motif of PrP8 is highly conserved and provides a possible RNA binding centre for the 5-prime SS, BP, or 3-prime SS of pre-mRNA which are known to contact with Prp8. The most conserved regions of an RRM are defined as the RNP1 and RNP2 sequences. Recognition of RNA targets can also be modulated by a number of other factors, most notably the two loops beta1-alpha1, beta2-beta3 and the amino acid residues C-terminal to the RNP2 domain [2].
Domain
L [auth A]PF10596U6-snRNA interacting domain of PrP8 (U6-snRNA_bdg)U6-snRNA interacting domain of PrP8This domain incorporates the interacting site for the U6-snRNA as part of the U4/U6.U5 tri-snRNPs complex of the spliceosome, and is the prime candidate for the role of cofactor for the spliceosome's RNA core. The essential spliceosomal protein Prp8 ...This domain incorporates the interacting site for the U6-snRNA as part of the U4/U6.U5 tri-snRNPs complex of the spliceosome, and is the prime candidate for the role of cofactor for the spliceosome's RNA core. The essential spliceosomal protein Prp8 interacts with U5 and U6 snRNAs and with specific pre-mRNA sequences that participate in catalysis. This close association with crucial RNA sequences, together with extensive genetic evidence, suggests that Prp8 could directly affect the function of the catalytic core, perhaps acting as a splicing cofactor [1].
Domain
L [auth A]PF12134PRP8 domain IV core (PRP8_domainIV)PRP8 domain IV coreThis domain is found in eukaryotes, and is about 20 amino acids in length. It is found associated with Pfam:PF10597, Pfam:PF10596, Pfam:PF10598, Pfam:PF08083, Pfam:PF08082, Pfam:PF01398, Pfam:PF08084. There is a conserved LILR sequence motif. The dom ...This domain is found in eukaryotes, and is about 20 amino acids in length. It is found associated with Pfam:PF10597, Pfam:PF10596, Pfam:PF10598, Pfam:PF08083, Pfam:PF08082, Pfam:PF01398, Pfam:PF08084. There is a conserved LILR sequence motif. The domain is a selenomethionine domain in a subunit of the spliceosome. The function of PRP8 domain IV is believed to be interaction with the splicosomal core.
Domain
L [auth A]PF08082PRO8NT (NUC069), PrP8 N-terminal domain (PRO8NT)PRO8NT (NUC069), PrP8 N-terminal domainThe PRO8NT domain is found at the N-terminus of pre-mRNA splicing factors of PRO8 family [1]. The NLS or nuclear localisation signal for these spliceosome proteins begins at the start and runs for 60 residues. N-terminal to this domain is a highly va ...The PRO8NT domain is found at the N-terminus of pre-mRNA splicing factors of PRO8 family [1]. The NLS or nuclear localisation signal for these spliceosome proteins begins at the start and runs for 60 residues. N-terminal to this domain is a highly variable proline-rich region [4].
Domain
L [auth A]PF08083PROCN (NUC071) domain (PROCN)PROCN (NUC071) domainThe PROCN domain is the central domain in pre-mRNA splicing factors of PRO8 family [1].Domain
L [auth A]PF08084PROCT (NUC072) domain (PROCT)PROCT (NUC072) domainThe PROCT domain is the C-terminal domain in pre-mRNA splicing factors of PRO8 family [1].Domain
L [auth A]PF01398JAB1/Mov34/MPN/PAD-1 ubiquitin protease (JAB)JAB1/Mov34/MPN/PAD-1 ubiquitin protease- Family
L [auth A]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
M [auth B]PF02889Sec63 Brl domain (Sec63)Sec63 Brl domain- Family
M [auth B]PF21188Pre-mRNA-splicing helicase BRR2 plug domain (BRR2_plug)Pre-mRNA-splicing helicase BRR2 plug domainThis entry represents the Plug domain from the Brr2 RNA helicase protein. The Brr2 helicase provides the key remodelling activity for spliceosome catalytic activation, during which it disrupts the U4/U6 di-snRNP (small nuclear RNA protein) [2]. The p ...This entry represents the Plug domain from the Brr2 RNA helicase protein. The Brr2 helicase provides the key remodelling activity for spliceosome catalytic activation, during which it disrupts the U4/U6 di-snRNP (small nuclear RNA protein) [2]. The plug domain is a small alpha helical bundle domain found near the N-terminus of the Brr2 protein [2].
Domain
M [auth B]PF00270DEAD/DEAH box helicase (DEAD)DEAD/DEAH box helicaseMembers of this family include the DEAD and DEAH box helicases. Helicases are involved in unwinding nucleic acids. The DEAD box helicases are involved in various aspects of RNA metabolism, including nuclear transcription, pre mRNA splicing, ribosome ...Members of this family include the DEAD and DEAH box helicases. Helicases are involved in unwinding nucleic acids. The DEAD box helicases are involved in various aspects of RNA metabolism, including nuclear transcription, pre mRNA splicing, ribosome biogenesis, nucleocytoplasmic transport, translation, RNA decay and organellar gene expression.
Domain
M [auth B]PF00271Helicase conserved C-terminal domain (Helicase_C)Helicase conserved C-terminal domainThe Prosite family is restricted to DEAD/H helicases, whereas this domain family is found in a wide variety of helicases and helicase related proteins. It may be that this is not an autonomously folding unit, but an integral part of the helicase.Domain
M [auth B]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
N [auth C]PF00679Elongation factor G C-terminus (EFG_C)Elongation factor G C-terminusThis domain includes the carboxyl terminal regions of Elongation factor G, elongation factor 2 and some tetracycline resistance proteins and adopt a ferredoxin-like fold.Domain
N [auth C]PF00009Elongation factor Tu GTP binding domain (GTP_EFTU)Elongation factor Tu GTP binding domainThis domain contains a P-loop motif, also found in several other families such as Pfam:PF00071, Pfam:PF00025 and Pfam:PF00063. Elongation factor Tu consists of three structural domains, this plus two C-terminal beta barrel domains.Domain
N [auth C]PF14492Elongation Factor G, domain III (EFG_III)Elongation Factor G, domain IIIThis domain is found in Elongation Factor G. It shares a similar structure with domain V (Pfam:PF00679). Structural studies in drosophila indicate this is domain 3 [1].Domain
N [auth C]PF03144Elongation factor Tu domain 2 (GTP_EFTU_D2)Elongation factor Tu domain 2Elongation factor Tu consists of three structural domains, this is the second domain. This domain adopts a beta barrel structure. This the second domain is involved in binding to charged tRNA [1]. This domain is also found in other proteins such as e ...Elongation factor Tu consists of three structural domains, this is the second domain. This domain adopts a beta barrel structure. This the second domain is involved in binding to charged tRNA [1]. This domain is also found in other proteins such as elongation factor G and translation initiation factor IF-2. This domain is structurally related to Pfam:PF03143, and in fact has weak sequence matches to this domain.
Domain
N [auth C]PF03764Elongation factor G, domain IV (EFG_IV)Elongation factor G, domain IVThis domain is found in elongation factor G, elongation factor 2 and some tetracycline resistance proteins and adopts a ribosomal protein S5 domain 2-like fold.Domain
N [auth C]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
O [auth D]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
P [auth E]PF00400WD domain, G-beta repeat (WD40)WD domain, G-beta repeat- Repeat
P [auth E]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
R [auth F]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
S [auth H]PF02847MA3 domain (MA3)MA3 domain- Repeat
S [auth H]PF02854MIF4G domain (MIF4G)MIF4G domain- Repeat
S [auth H]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
T [auth I]PF13181Tetratricopeptide repeat (TPR_8)Tetratricopeptide repeat- Repeat
T [auth I]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
V [auth J]PF02184HAT (Half-A-TPR) repeat (HAT)HAT (Half-A-TPR) repeat- Repeat
V [auth J]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
X [auth L]PF13921Myb-like DNA-binding domain (Myb_DNA-bind_6)Myb-like DNA-binding domainThis family contains the DNA binding domains from Myb proteins, as well as the SANT domain family [1].Domain
X [auth L]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
Y [auth M]PF08231SYF2 splicing factor (SYF2)SYF2 splicing factorProteins in this family are involved in cell cycle progression and pre-mRNA splicing [1] [2].Domain
Y [auth M]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
Z [auth N]PF01125Pre-mRNA-splicing factor BUD31 (BUD31)Pre-mRNA-splicing factor BUD31This entry includes Pre-mRNA-splicing factor BUD31, also known as G10 protein, and its homologues. BUD31 is involved in the pre-mRNA splicing process [1-3] and it is highly conserved in a wide range of eukaryotic species. Human BUD31 may play a role ...This entry includes Pre-mRNA-splicing factor BUD31, also known as G10 protein, and its homologues. BUD31 is involved in the pre-mRNA splicing process [1-3] and it is highly conserved in a wide range of eukaryotic species. Human BUD31 may play a role as a regulator of androgen receptor (AR) transcriptional activity, probably increasing the AR transcriptional activity [4].
Domain
Z [auth N]PF01423LSM domain (LSM)LSM domainThe LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) i ...The LSM domain contains Sm proteins as well as other related LSM (Like Sm) proteins. The U1, U2, U4/U6, and U5 small nuclear ribonucleoprotein particles (snRNPs) involved in pre-mRNA splicing contain seven Sm proteins (B/B', D1, D2, D3, E, F and G) in common, which assemble around the Sm site present in four of the major spliceosomal small nuclear RNAs. The U6 snRNP binds to the LSM (Like Sm) proteins [3]. Sm proteins are also found in archaebacteria, which do not have any splicing apparatus suggesting a more general role for Sm proteins. All Sm proteins contain a common sequence motif in two segments, Sm1 and Sm2, separated by a short variable linker. This family also includes the bacterial Hfq (host factor Q) proteins. Hfq are also RNA-binding proteins, that form hexameric rings.
Domain
BA [auth O]PF00076RNA recognition motif (RRM_1)RNA recognition motifThe RRM motif (a.k.a. RRM, RBD, or RNP domain) is probably diagnostic of an RNA binding protein. RRMs are found in a variety of RNA binding proteins, including various hnRNP proteins, proteins implicated in regulation of alternative splicing, and pro ...The RRM motif (a.k.a. RRM, RBD, or RNP domain) is probably diagnostic of an RNA binding protein. RRMs are found in a variety of RNA binding proteins, including various hnRNP proteins, proteins implicated in regulation of alternative splicing, and protein components of snRNPs. The motif also appears in a few single stranded DNA binding proteins. The RRM structure consists of four strands and two helices arranged in an alpha/beta sandwich, with a third helix present during RNA binding in some cases The C-terminal beta strand (4th strand) and final helix are hard to align and have been omitted in the SEED alignment The LA proteins (Swiss:P05455) have an N terminal rrm which is included in the seed. There is a second region towards the C terminus that has some features characteristic of a rrm but does not appear to have the important structural core of a rrm. The LA proteins (Swiss:P05455) are one of the main autoantigens in Systemic lupus erythematosus (SLE), an autoimmune disease.
Domain
BA [auth O]PF21369STL11, N-terminal (STL11_N)STL11, N-terminalThis entry represents the N-terminal domain of STL11 from yeast and its homologues [1-4], such as RBM22 from human. This domain comprises a zinc finger, FYVE/PHD type. Members of this entry are involved in pre-mRNA splicing.Domain
CA [auth P]PF00076RNA recognition motif (RRM_1)RNA recognition motifThe RRM motif (a.k.a. RRM, RBD, or RNP domain) is probably diagnostic of an RNA binding protein. RRMs are found in a variety of RNA binding proteins, including various hnRNP proteins, proteins implicated in regulation of alternative splicing, and pro ...The RRM motif (a.k.a. RRM, RBD, or RNP domain) is probably diagnostic of an RNA binding protein. RRMs are found in a variety of RNA binding proteins, including various hnRNP proteins, proteins implicated in regulation of alternative splicing, and protein components of snRNPs. The motif also appears in a few single stranded DNA binding proteins. The RRM structure consists of four strands and two helices arranged in an alpha/beta sandwich, with a third helix present during RNA binding in some cases The C-terminal beta strand (4th strand) and final helix are hard to align and have been omitted in the SEED alignment The LA proteins (Swiss:P05455) have an N terminal rrm which is included in the seed. There is a second region towards the C terminus that has some features characteristic of a rrm but does not appear to have the important structural core of a rrm. The LA proteins (Swiss:P05455) are one of the main autoantigens in Systemic lupus erythematosus (SLE), an autoimmune disease.
Domain
DA [auth Q]PF21144Intron-binding protein aquarius insert domain (Aquarius_N_3rd)Intron-binding protein aquarius insert domainThis entry represents the insert domain of intron-binding protein aquarius, a splicing factor which links excision of introns from pre-mRNA with snoRP assembly [1,2].Domain
DA [auth Q]PF13086AAA domain (AAA_11)AAA domainThis family of domains contain a P-loop motif that is characteristic of the AAA superfamily. Many of the proteins in this family are conjugative transfer proteins.Domain
DA [auth Q]PF21143Intron-binding protein aquarius, beta-barrel (Aquarius_N_2nd)Intron-binding protein aquarius, beta-barrelThis entry represents the beta-barrel domain found at the N-terminal of intron-binding protein aquarius, a splicing factor which links excision of introns from pre-mRNA with snoRP assembly [1,2].Domain
DA [auth Q]PF13087AAA domain (AAA_12)AAA domainThis family of domains contain a P-loop motif that is characteristic of the AAA superfamily. Many of the proteins in this family are conjugative transfer proteins.Domain
DA [auth Q]PF16399Intron-binding protein aquarius N-terminal (Aquarius_N_1st)Intron-binding protein aquarius N-terminal- Repeat
EA [auth R]PF04564U-box domain (U-box)U-box domainThe U-box is a domain of ~70 amino acids that is present in proteins from yeast to human. It consists of the beta-beta-alpha-beta-alpha- fold typical of U-box and RING domains. The central alpha helix is flanked by two prominent surface-exposed loop ...The U-box is a domain of ~70 amino acids that is present in proteins from yeast to human. It consists of the beta-beta-alpha-beta-alpha- fold typical of U-box and RING domains. The central alpha helix is flanked by two prominent surface-exposed loop regions. This domain is one class of E3 ligases, involved in the ubiquitination process [1-3]. This domain is related to the Ring finger Pfam:PF00097 but lacks the zinc binding residues [4].
Domain
EA [auth R]PF02731SKIP/SNW domain (SKIP_SNW)SKIP/SNW domain- Family
FA [auth S]PF00160Cyclophilin type peptidyl-prolyl cis-trans isomerase/CLD (Pro_isomerase)Cyclophilin type peptidyl-prolyl cis-trans isomerase/CLDThe peptidyl-prolyl cis-trans isomerases, also known as cyclophilins, share this domain of about 109 amino acids. Cyclophilins have been found in all organisms studied so far and catalyse peptidyl-prolyl isomerisation during which the peptide bond pr ...The peptidyl-prolyl cis-trans isomerases, also known as cyclophilins, share this domain of about 109 amino acids. Cyclophilins have been found in all organisms studied so far and catalyse peptidyl-prolyl isomerisation during which the peptide bond preceding proline (the peptidyl-prolyl bond) is stabilised in the cis conformation. Mammalian cyclophilin A (CypA) is a major cellular target for the immunosuppressive drug cyclosporin A (CsA). Other roles for cyclophilins may include chaperone and cell signalling function [1].
Domain
FA [auth S]PF08606Prp19/Pso4-like (Prp19)Prp19/Pso4-likeThis regions is found specifically in PRP19-like protein. The region represented by this family covers the sequence implicated in self-interaction and a coiled-coiled motif [1]. PRP19-like proteins form an oligomer that is necessary ...This regions is found specifically in PRP19-like protein. The region represented by this family covers the sequence implicated in self-interaction and a coiled-coiled motif [1]. PRP19-like proteins form an oligomer that is necessary for spliceosome assembly [1].
Domain
FA [auth S]PF04564U-box domain (U-box)U-box domainThe U-box is a domain of ~70 amino acids that is present in proteins from yeast to human. It consists of the beta-beta-alpha-beta-alpha- fold typical of U-box and RING domains. The central alpha helix is flanked by two prominent surface-exposed loop ...The U-box is a domain of ~70 amino acids that is present in proteins from yeast to human. It consists of the beta-beta-alpha-beta-alpha- fold typical of U-box and RING domains. The central alpha helix is flanked by two prominent surface-exposed loop regions. This domain is one class of E3 ligases, involved in the ubiquitination process [1-3]. This domain is related to the Ring finger Pfam:PF00097 but lacks the zinc binding residues [4].
Domain
GA [auth SR]PF08312cwf21 domain (cwf21)cwf21 domainThe cwf21 family is involved in mRNA splicing. It has been isolated as a subcomplex of the splicosome in Schizosaccharomyces pombe [1]. The function of the cwf21 domain is to bind directly to the spliceosomal protein Prp8. Mutations in the cwf21 dom ...The cwf21 family is involved in mRNA splicing. It has been isolated as a subcomplex of the splicosome in Schizosaccharomyces pombe [1]. The function of the cwf21 domain is to bind directly to the spliceosomal protein Prp8. Mutations in the cwf21 domain prevent Prp8 from binding [2]. The structure of this domain has recently been solved which shows this domain to be composed of two alpha helices.
Domain
HA [auth T]PF00400WD domain, G-beta repeat (WD40)WD domain, G-beta repeat- Repeat
IA [auth U]PF11708Pre-mRNA splicing Prp18-interacting factor (Slu7)Pre-mRNA splicing Prp18-interacting factorThe spliceosome, an assembly of snRNAs (U1, U2, U4/U6, and U5) and proteins, catalyses the excision of introns from pre-mRNAs in two successive trans-esterification reactions. Step 2 depends upon integral spliceosome constituents such as U5 snRNA and ...The spliceosome, an assembly of snRNAs (U1, U2, U4/U6, and U5) and proteins, catalyses the excision of introns from pre-mRNAs in two successive trans-esterification reactions. Step 2 depends upon integral spliceosome constituents such as U5 snRNA and Prp8 and non-spliceosomal proteins Prp16, Slu7, Prp18, and Prp22. ATP hydrolysis by the DEAH-box enzyme Prp16 promotes a conformational change in the spliceosome that leads to protection of the 3'ss from targeted RNase H cleavage. This change, which probably reflects binding of the 3'ss PyAG in the catalytic centre of the spliceosome, requires the ordered recruitment of Slu7, Prp18, and Prp22 to the spliceosome. There is a close functional relationship between Prp8, Prp18, and Slu7, and Prp18 interacts with Slu7, so that together they recruit Prp22 to the spliceosome. Most members of the family carry a zinc-finger of the CCHC-type upstream of this domain.
Domain
JA [auth V]PF04408Helicase associated domain (HA2), winged-helix (HA2_N)Helicase associated domain (HA2), winged-helixThe helicase associated domain (HA2) has an all alpha-helical fold and consists of a N-terminal winged-helix (WH) domain and a C-terminal degenerate helical-bundle domain, referred to as the ratchet-like domain [1,2,3]. These domains collaborate wit ...The helicase associated domain (HA2) has an all alpha-helical fold and consists of a N-terminal winged-helix (WH) domain and a C-terminal degenerate helical-bundle domain, referred to as the ratchet-like domain [1,2,3]. These domains collaborate with RecA domains at the N-terminal in completing an RNA binding channel to allow the helicases to keep a stable grip on the RNA [3] and assure its correct function. This entry represents the WH domain, which connects the N- (RecA domains) and C-terminal domains (ratchet-like and OB-fold) of helicases.
Domain
JA [auth V]PF07717Oligonucleotide/oligosaccharide-binding (OB)-fold (OB_NTP_bind)Oligonucleotide/oligosaccharide-binding (OB)-foldThis family is found towards the C-terminus of the DEAD-box helicases (Pfam:PF00270). In these helicases it is apparently always found in association with Pfam:PF04408. There do seem to be a couple of instances where it occurs by itself - e.g. Swiss: ...This family is found towards the C-terminus of the DEAD-box helicases (Pfam:PF00270). In these helicases it is apparently always found in association with Pfam:PF04408. There do seem to be a couple of instances where it occurs by itself - e.g. Swiss:Q84VZ2. The structure PDB:3i4u adopts an OB-fold. helicases (Pfam:PF00270). In these helicases it is apparently always found in association with Pfam:PF04408. This C-terminal domain of the yeast helicase contains an oligonucleotide/oligosaccharide-binding (OB)-fold which seems to be placed at the entrance of the putative nucleic acid cavity. It also constitutes the binding site for the G-patch-containing domain of Pfa1p. When found on DEAH/RHA helicases, this domain is central to the regulation of the helicase activity through its binding of both RNA and G-patch domain proteins [1].
Domain
JA [auth V]PF00270DEAD/DEAH box helicase (DEAD)DEAD/DEAH box helicaseMembers of this family include the DEAD and DEAH box helicases. Helicases are involved in unwinding nucleic acids. The DEAD box helicases are involved in various aspects of RNA metabolism, including nuclear transcription, pre mRNA splicing, ribosome ...Members of this family include the DEAD and DEAH box helicases. Helicases are involved in unwinding nucleic acids. The DEAD box helicases are involved in various aspects of RNA metabolism, including nuclear transcription, pre mRNA splicing, ribosome biogenesis, nucleocytoplasmic transport, translation, RNA decay and organellar gene expression.
Domain
JA [auth V]PF00271Helicase conserved C-terminal domain (Helicase_C)Helicase conserved C-terminal domainThe Prosite family is restricted to DEAD/H helicases, whereas this domain family is found in a wide variety of helicases and helicase related proteins. It may be that this is not an autonomously folding unit, but an integral part of the helicase.Domain
JA [auth V]PF21010Helicase associated domain (HA2), ratchet-like (HA2_C)Helicase associated domain (HA2), ratchet-likeThe helicase associated domain (HA2) has an all alpha-helical fold and consists of a N-terminal winged-helix (WH) domain (Pfam:PF04408) and a C-terminal degenerate helical-bundle domain, referred to as the ratchet-like domain [1,2,3]. These domains c ...The helicase associated domain (HA2) has an all alpha-helical fold and consists of a N-terminal winged-helix (WH) domain (Pfam:PF04408) and a C-terminal degenerate helical-bundle domain, referred to as the ratchet-like domain [1,2,3]. These domains collaborate with the RecA domains at the N-terminal in completing an RNA binding channel to allow the helicases to keep a stable grip on the RNA [3]. This entry represents the ratchet-like domain, which may be important for RNA translocation [1,2].
Domain
KA [auth W]PF00160Cyclophilin type peptidyl-prolyl cis-trans isomerase/CLD (Pro_isomerase)Cyclophilin type peptidyl-prolyl cis-trans isomerase/CLDThe peptidyl-prolyl cis-trans isomerases, also known as cyclophilins, share this domain of about 109 amino acids. Cyclophilins have been found in all organisms studied so far and catalyse peptidyl-prolyl isomerisation during which the peptide bond pr ...The peptidyl-prolyl cis-trans isomerases, also known as cyclophilins, share this domain of about 109 amino acids. Cyclophilins have been found in all organisms studied so far and catalyse peptidyl-prolyl isomerisation during which the peptide bond preceding proline (the peptidyl-prolyl bond) is stabilised in the cis conformation. Mammalian cyclophilin A (CypA) is a major cellular target for the immunosuppressive drug cyclosporin A (CsA). Other roles for cyclophilins may include chaperone and cell signalling function [1].
Domain
KA [auth W]PF00400WD domain, G-beta repeat (WD40)WD domain, G-beta repeat- Repeat
F [auth 50]PF04921XAP5, circadian clock regulator C-terminal domain (XAP5)XAP5, circadian clock regulator C-terminal domainThis protein is found in a wide range of eukaryotes. It is a nuclear protein previously suggested to be DNA binding [1,2] but recent studies suggest that they play a role in the spliceosome complex [3]. In plants, this family is essential for correc ...This protein is found in a wide range of eukaryotes. It is a nuclear protein previously suggested to be DNA binding [1,2] but recent studies suggest that they play a role in the spliceosome complex [3]. In plants, this family is essential for correct circadian clock functioning by acting as a light-quality regulator coordinating the activities of blue and red light signalling pathways during plant growth - inhibiting growth in red light but promoting growth in blue light [4]. The AlphaFold model of this domain shows structural similarity to the RA domain Pfam:PF00788.
Domain
I [auth 7]PF00270DEAD/DEAH box helicase (DEAD)DEAD/DEAH box helicaseMembers of this family include the DEAD and DEAH box helicases. Helicases are involved in unwinding nucleic acids. The DEAD box helicases are involved in various aspects of RNA metabolism, including nuclear transcription, pre mRNA splicing, ribosome ...Members of this family include the DEAD and DEAH box helicases. Helicases are involved in unwinding nucleic acids. The DEAD box helicases are involved in various aspects of RNA metabolism, including nuclear transcription, pre mRNA splicing, ribosome biogenesis, nucleocytoplasmic transport, translation, RNA decay and organellar gene expression.
Domain
I [auth 7]PF00271Helicase conserved C-terminal domain (Helicase_C)Helicase conserved C-terminal domainThe Prosite family is restricted to DEAD/H helicases, whereas this domain family is found in a wide variety of helicases and helicase related proteins. It may be that this is not an autonomously folding unit, but an integral part of the helicase.Domain

Gene Ontology: Gene Product Annotation Gene Ontology Database Homepage

ChainsPolymerMolecular FunctionBiological ProcessCellular Component
W [auth K]Pre-mRNA-splicing factor SPF27-
AA [auth NO]Nitric oxide synthase-interacting protein
IB [auth x]Splicing factor C9orf78
A [auth 1]PRKR-interacting protein 1
J [auth 8]RNA-binding protein 8A
K [auth 9]Protein mago nashi homolog
L [auth A]Pre-mRNA-processing-splicing factor 8
M [auth B]U5 small nuclear ribonucleoprotein 200 kDa helicase
N [auth C]116 kDa U5 small nuclear ribonucleoprotein component
O [auth D]Pre-mRNA-splicing factor ISY1 homolog
P [auth E]U5 small nuclear ribonucleoprotein 40 kDa protein
Q [auth EX]Exon---
R [auth F]Splicing factor Cactin
S [auth H]Pre-mRNA-splicing factor CWC22 homolog
B [auth 2]U2 snRNA---
T [auth I]Pre-mRNA-splicing factor SYF1-
U [auth IN]INTRON---
V [auth J]Crooked neck-like protein 1
X [auth L]Cell division cycle 5-like protein
Y [auth M]Pre-mRNA-splicing factor SYF2
Z [auth N]Protein BUD31 homolog
BA [auth O]Pre-mRNA-splicing factor RBM22
CA [auth P]Spliceosome-associated protein CWC15 homolog
C [auth 3]Splicing factor ESS-2 homolog-
DA [auth Q]Intron-binding protein aquarius
EA [auth R]SNW domain-containing protein 1
FA [auth S]Peptidyl-prolyl cis-trans isomerase-like 1
GA [auth SR]Serine/arginine repetitive matrix protein 2
HA [auth T]Pleiotropic regulator 1-
IA [auth U]Pre-mRNA-splicing factor SLU7
JA [auth V]ATP-dependent RNA helicase DHX8
KA [auth W]Pre-mRNA-processing factor 17
LA [auth X]Splicing regulator SDE2
MA [auth Z]Coiled-coil domain-containing protein 12- -
D [auth 32]Protein FAM32A
NA [auth a],
UA [auth h]
Small nuclear ribonucleoprotein Sm D3
OA [auth b],
VA [auth i]
Small nuclear ribonucleoprotein-associated proteins B and B'
PA [auth c],
WA [auth j]
Small nuclear ribonucleoprotein Sm D1
QA [auth d],
XA [auth k]
Small nuclear ribonucleoprotein Sm D2
RA [auth e],
YA [auth l]
Small nuclear ribonucleoprotein E
SA [auth f],
ZA [auth m]
Small nuclear ribonucleoprotein F
AB [auth n],
TA [auth g]
Small nuclear ribonucleoprotein G
BB [auth o]U2 small nuclear ribonucleoprotein A'
CB [auth p]U2 small nuclear ribonucleoprotein B''
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
Pre-mRNA-processing factor 19
E [auth 5]U5 snRNA---
HB [auth w]Peptidylprolyl isomerase domain and WD repeat-containing protein 1
JB [auth y]Peptidyl-prolyl cis-trans isomerase E
KB [auth z]NF-kappa-B-activating protein
F [auth 50]Protein FAM50A
G [auth 56]STING ER exit protein
H [auth 6]U6 snRNA---
I [auth 7]Eukaryotic initiation factor 4A-III

InterPro: Protein Family Classification InterPro Database Homepage

ChainsAccessionNameType
W [auth K]IPR008409Pre-mRNA-splicing factor SPF27Family
AA [auth NO]IPR013083Zinc finger, RING/FYVE/PHD-typeHomologous Superfamily
AA [auth NO]IPR016818Nitric oxide synthase-interacting proteinFamily
AA [auth NO]IPR031790Nitric oxide synthase-interacting protein, zinc-fingerDomain
IB [auth x]IPR010756Telomere length and silencing protein 1-likeFamily
A [auth 1]IPR009548PRKR-interacting protein 1Family
J [auth 8]IPR033744RBM8, RNA recognition motifDomain
J [auth 8]IPR000504RNA recognition motif domainDomain
J [auth 8]IPR008111RNA-binding motif protein 8Family
J [auth 8]IPR012677Nucleotide-binding alpha-beta plait domain superfamilyHomologous Superfamily
J [auth 8]IPR035979RNA-binding domain superfamilyHomologous Superfamily
K [auth 9]IPR004023Mago nashi proteinFamily
K [auth 9]IPR036605Mago nashi superfamilyHomologous Superfamily
L [auth A]IPR012984PROCT domainDomain
L [auth A]IPR012591PRO8NT domainDomain
L [auth A]IPR019580Pre-mRNA-processing-splicing factor 8, U6-snRNA-bindingDomain
L [auth A]IPR027652Pre-mRNA-processing-splicing factor 8Family
L [auth A]IPR043172Prp8 RNase domain IV, palm regionHomologous Superfamily
L [auth A]IPR012592PROCN domainDomain
L [auth A]IPR012337Ribonuclease H-like superfamilyHomologous Superfamily
L [auth A]IPR043173Prp8 RNase domain IV, fingers regionHomologous Superfamily
L [auth A]IPR021983PRP8 domain IV coreDomain
L [auth A]IPR019581Pre-mRNA-processing-splicing factor 8, U5-snRNA-bindingDomain
L [auth A]IPR037518MPN domainDomain
L [auth A]IPR019582RNA recognition motif, spliceosomal PrP8Domain
L [auth A]IPR042516Pre-mRNA-processing-splicing factor 8, U5-snRNA-binding domain superfamilyHomologous Superfamily
L [auth A]IPR000555JAB1/MPN/MOV34 metalloenzyme domainDomain
M [auth B]IPR048863Pre-mRNA-splicing helicase BRR2-like, plug domainDomain
M [auth B]IPR041094Brr2, N-terminal helicase PWI domainDomain
M [auth B]IPR004179Sec63 domainDomain
M [auth B]IPR014756Immunoglobulin E-setHomologous Superfamily
M [auth B]IPR011545DEAD/DEAH box helicase domainDomain
M [auth B]IPR027417P-loop containing nucleoside triphosphate hydrolaseHomologous Superfamily
M [auth B]IPR050474Helicase Hel308/SKI2-likeFamily
M [auth B]IPR001650Helicase, C-terminal domain-likeDomain
M [auth B]IPR036388Winged helix-like DNA-binding domain superfamilyHomologous Superfamily
M [auth B]IPR014001Helicase superfamily 1/2, ATP-binding domainDomain
M [auth B]IPR036390Winged helix DNA-binding domain superfamilyHomologous Superfamily
M [auth B]IPR035892C2 domain superfamilyHomologous Superfamily
N [auth C]IPR005517Translation elongation factor EFG/EF2, domain IVDomain
N [auth C]IPR000795Translational (tr)-type GTP-binding domainDomain
N [auth C]IPR035647EF-G domain III/V-likeHomologous Superfamily
N [auth C]IPR035655116kDa U5 small nuclear ribonucleoprotein component, C-terminalDomain
N [auth C]IPR041095Elongation Factor G, domain IIDomain
N [auth C]IPR004161Translation elongation factor EFTu-like, domain 2Domain
N [auth C]IPR009000Translation protein, beta-barrel domain superfamilyHomologous Superfamily
N [auth C]IPR020568Ribosomal protein uS5 domain 2-type superfamilyHomologous Superfamily
N [auth C]IPR027417P-loop containing nucleoside triphosphate hydrolaseHomologous Superfamily
N [auth C]IPR014721Small ribosomal subunit protein uS5 domain 2-type fold, subgroupHomologous Superfamily
N [auth C]IPR031950116kDa U5 small nuclear ribonucleoprotein component, N-terminalDomain
N [auth C]IPR005225Small GTP-binding domainDomain
N [auth C]IPR000640Elongation factor EFG, domain V-likeDomain
N [auth C]IPR044121Snu114, GTP-binding domainDomain
O [auth D]IPR029012Helix hairpin bin domain superfamilyHomologous Superfamily
O [auth D]IPR009360Pre-mRNA-splicing factor Isy1Family
O [auth D]IPR037200Pre-mRNA-splicing factor Isy1 superfamilyHomologous Superfamily
P [auth E]IPR052234U5 snRNP Complex ComponentFamily
P [auth E]IPR019775WD40 repeat, conserved siteConserved Site
P [auth E]IPR036322WD40-repeat-containing domain superfamilyHomologous Superfamily
P [auth E]IPR001680WD40 repeatRepeat
P [auth E]IPR020472G-protein beta WD-40 repeatRepeat
P [auth E]IPR015943WD40/YVTN repeat-like-containing domain superfamilyHomologous Superfamily
R [auth F]IPR019134Splicing factor Cactin, C-terminalDomain
R [auth F]IPR018816Splicing factor cactin, central domainDomain
S [auth H]IPR050781Pre-mRNA-splicing factor CWC22Family
S [auth H]IPR016024Armadillo-type foldHomologous Superfamily
S [auth H]IPR003891Initiation factor eIF-4 gamma, MA3Domain
S [auth H]IPR003890MIF4G-like, type 3Domain
T [auth I]IPR011990Tetratricopeptide-like helical domain superfamilyHomologous Superfamily
T [auth I]IPR003107HAT (Half-A-TPR) repeatRepeat
T [auth I]IPR045075Pre-mRNA-splicing factor Syf1-likeFamily
T [auth I]IPR019734Tetratricopeptide repeatRepeat
V [auth J]IPR011990Tetratricopeptide-like helical domain superfamilyHomologous Superfamily
V [auth J]IPR003107HAT (Half-A-TPR) repeatRepeat
V [auth J]IPR045075Pre-mRNA-splicing factor Syf1-likeFamily
X [auth L]IPR047240Pre-mRNA splicing factor component CDC5L/Cef1, second SANT/myb-like domainDomain
X [auth L]IPR017930Myb domainDomain
X [auth L]IPR047242Pre-mRNA splicing factor component CDC5L/Cef1Family
X [auth L]IPR009057Homedomain-like superfamilyHomologous Superfamily
X [auth L]IPR001005SANT/Myb domainDomain
X [auth L]IPR021786Pre-mRNA splicing factor component Cdc5p/Cef1, C-terminalDomain
Y [auth M]IPR013260mRNA splicing factor SYF2Family
Z [auth N]IPR001748Pre-mRNA-splicing factor BUD31Family
Z [auth N]IPR018230BUD31/G10-related, conserved siteConserved Site
BA [auth O]IPR036855Zinc finger, CCCH-type superfamilyHomologous Superfamily
BA [auth O]IPR039171Pre-mRNA-splicing factor Cwc2/Slt11Family
BA [auth O]IPR000504RNA recognition motif domainDomain
BA [auth O]IPR000571Zinc finger, CCCH-typeDomain
BA [auth O]IPR012677Nucleotide-binding alpha-beta plait domain superfamilyHomologous Superfamily
BA [auth O]IPR048995STL11/RBM22-like, N-terminal domainDomain
BA [auth O]IPR035979RNA-binding domain superfamilyHomologous Superfamily
CA [auth P]IPR006973Pre-mRNA-splicing factor Cwf15/Cwc15Family
C [auth 3]IPR019148Nuclear protein DGCR14/ESS-2Family
DA [auth Q]IPR048966RNA helicase aquarius, beta-barrelDomain
DA [auth Q]IPR048967RNA helicase aquarius, insertion domainDomain
DA [auth Q]IPR041677DNA2/NAM7 helicase, helicase domainDomain
DA [auth Q]IPR026300CWF11 familyFamily
DA [auth Q]IPR045055DNA2/NAM7-like helicaseFamily
DA [auth Q]IPR032174RNA helicase aquarius, N-terminal domainDomain
DA [auth Q]IPR041679DNA2/NAM7 helicase-like, C-terminalDomain
DA [auth Q]IPR047187Upf1-like, C-terminal helicase domainDomain
DA [auth Q]IPR027417P-loop containing nucleoside triphosphate hydrolaseHomologous Superfamily
EA [auth R]IPR017862SKI-interacting protein, SKIPFamily
EA [auth R]IPR004015SKI-interacting protein SKIP, SNW domainDomain
FA [auth S]IPR029000Cyclophilin-like domain superfamilyHomologous Superfamily
FA [auth S]IPR024936Cyclophilin-type peptidyl-prolyl cis-trans isomeraseFamily
FA [auth S]IPR002130Cyclophilin-type peptidyl-prolyl cis-trans isomerase domainDomain
FA [auth S]IPR044666Cyclophilin-type peptidyl-prolyl cis-trans isomerase, cyclophilin A-likeFamily
FA [auth S]IPR020892Cyclophilin-type peptidyl-prolyl cis-trans isomerase, conserved siteConserved Site
GA [auth SR]IPR047490Serine/arginine repetitive matrix protein 2, cwf21 domainDomain
GA [auth SR]IPR013170mRNA splicing factor Cwf21 domainDomain
GA [auth SR]IPR024945Spt5 C-terminal domainDomain
GA [auth SR]IPR051372Pre-mRNA-splicing factor CWC21Family
HA [auth T]IPR019775WD40 repeat, conserved siteConserved Site
HA [auth T]IPR036322WD40-repeat-containing domain superfamilyHomologous Superfamily
HA [auth T]IPR045241WD repeat Prp46/PLRG1-likeFamily
HA [auth T]IPR001680WD40 repeatRepeat
HA [auth T]IPR020472G-protein beta WD-40 repeatRepeat
HA [auth T]IPR015943WD40/YVTN repeat-like-containing domain superfamilyHomologous Superfamily
IA [auth U]IPR021715Pre-mRNA-splicing factor SLU7 domainDomain
IA [auth U]IPR039974Pre-mRNA-splicing factor SLU7Family
JA [auth V]IPR049588DHX8, GH2-like domainDomain
JA [auth V]IPR048333Helicase associated domain (HA2), winged-helix domainDomain
JA [auth V]IPR049621DHX8 helicase, S1 domainDomain
JA [auth V]IPR002464DNA/RNA helicase, ATP-dependent, DEAH-box type, conserved siteConserved Site
JA [auth V]IPR011545DEAD/DEAH box helicase domainDomain
JA [auth V]IPR027417P-loop containing nucleoside triphosphate hydrolaseHomologous Superfamily
JA [auth V]IPR003029S1 domainDomain
JA [auth V]IPR011709DEAD-box helicase, OB foldDomain
JA [auth V]IPR001650Helicase, C-terminal domain-likeDomain
JA [auth V]IPR014001Helicase superfamily 1/2, ATP-binding domainDomain
JA [auth V]IPR044762DHX8/ Prp22, DEXH-box helicase domainDomain
JA [auth V]IPR012340Nucleic acid-binding, OB-foldHomologous Superfamily
JA [auth V]IPR007502Helicase-associated domainDomain
KA [auth W]IPR019775WD40 repeat, conserved siteConserved Site
KA [auth W]IPR032847Pre-mRNA-processing factor 17Family
KA [auth W]IPR036322WD40-repeat-containing domain superfamilyHomologous Superfamily
KA [auth W]IPR001680WD40 repeatRepeat
KA [auth W]IPR015943WD40/YVTN repeat-like-containing domain superfamilyHomologous Superfamily
LA [auth X]IPR053822SDE2-like domainDomain
LA [auth X]IPR053821Splicing regulator SDE2, ubiquitin domainDomain
LA [auth X]IPR025086SDE2/SF3A3, SAP domainDomain
LA [auth X]IPR051421RNA Processing and DNA Damage Response RegulatorFamily
MA [auth Z]IPR013169mRNA splicing factor Cwf18-likeFamily
D [auth 32]IPR013865Protein FAM32AFamily
NA [auth a],
UA [auth h]
IPR027141Like-Sm (LSM) domain containing protein, LSm4/SmD1/SmD3Family
NA [auth a],
UA [auth h]
IPR034099Small nuclear ribonucleoprotein Sm D3Family
NA [auth a],
UA [auth h]
IPR001163Sm domain, eukaryotic/archaea-typeDomain
NA [auth a],
UA [auth h]
IPR047575Sm domainDomain
NA [auth a],
UA [auth h]
IPR010920LSM domain superfamilyHomologous Superfamily
OA [auth b],
VA [auth i]
IPR050914Small nuclear ribonucleoprotein-associated SmB/NAA38-likeFamily
OA [auth b],
VA [auth i]
IPR001163Sm domain, eukaryotic/archaea-typeDomain
OA [auth b],
VA [auth i]
IPR017131Small ribonucleoprotein associated, SmB/SmNFamily
OA [auth b],
VA [auth i]
IPR047575Sm domainDomain
OA [auth b],
VA [auth i]
IPR010920LSM domain superfamilyHomologous Superfamily
PA [auth c],
WA [auth j]
IPR027141Like-Sm (LSM) domain containing protein, LSm4/SmD1/SmD3Family
PA [auth c],
WA [auth j]
IPR034102Small nuclear ribonucleoprotein D1Domain
PA [auth c],
WA [auth j]
IPR001163Sm domain, eukaryotic/archaea-typeDomain
PA [auth c],
WA [auth j]
IPR047575Sm domainDomain
PA [auth c],
WA [auth j]
IPR010920LSM domain superfamilyHomologous Superfamily
QA [auth d],
XA [auth k]
IPR001163Sm domain, eukaryotic/archaea-typeDomain
QA [auth d],
XA [auth k]
IPR047575Sm domainDomain
QA [auth d],
XA [auth k]
IPR027248Small nuclear ribonucleoprotein Sm D2Family
QA [auth d],
XA [auth k]
IPR010920LSM domain superfamilyHomologous Superfamily
RA [auth e],
YA [auth l]
IPR027078Small nuclear ribonucleoprotein EFamily
RA [auth e],
YA [auth l]
IPR001163Sm domain, eukaryotic/archaea-typeDomain
RA [auth e],
YA [auth l]
IPR047575Sm domainDomain
RA [auth e],
YA [auth l]
IPR010920LSM domain superfamilyHomologous Superfamily
SA [auth f],
ZA [auth m]
IPR016487Sm-like protein Lsm6/SmFFamily
SA [auth f],
ZA [auth m]
IPR034100Small nuclear ribonucleoprotein FFamily
SA [auth f],
ZA [auth m]
IPR001163Sm domain, eukaryotic/archaea-typeDomain
SA [auth f],
ZA [auth m]
IPR047575Sm domainDomain
SA [auth f],
ZA [auth m]
IPR010920LSM domain superfamilyHomologous Superfamily
AB [auth n],
TA [auth g]
IPR044641Sm-like protein Lsm7/SmGFamily
AB [auth n],
TA [auth g]
IPR034098Small nuclear ribonucleoprotein GFamily
AB [auth n],
TA [auth g]
IPR001163Sm domain, eukaryotic/archaea-typeDomain
AB [auth n],
TA [auth g]
IPR047575Sm domainDomain
AB [auth n],
TA [auth g]
IPR010920LSM domain superfamilyHomologous Superfamily
BB [auth o]IPR001611Leucine-rich repeatRepeat
BB [auth o]IPR003603U2A'/phosphoprotein 32 family A, C-terminalDomain
BB [auth o]IPR032675Leucine-rich repeat domain superfamilyHomologous Superfamily
CB [auth p]IPR034562U2 small nuclear ribonucleoprotein B'', RNA recognition motif 2Domain
CB [auth p]IPR000504RNA recognition motif domainDomain
CB [auth p]IPR012677Nucleotide-binding alpha-beta plait domain superfamilyHomologous Superfamily
CB [auth p]IPR035979RNA-binding domain superfamilyHomologous Superfamily
CB [auth p]IPR034564U2 small nuclear ribonucleoprotein B'', RNA recognition motif 1Domain
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
IPR013915Pre-mRNA-splicing factor 19Domain
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
IPR019775WD40 repeat, conserved siteConserved Site
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
IPR015943WD40/YVTN repeat-like-containing domain superfamilyHomologous Superfamily
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
IPR038959Pre-mRNA-processing factor 19Family
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
IPR003613U-box domainDomain
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
IPR013083Zinc finger, RING/FYVE/PHD-typeHomologous Superfamily
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
IPR036322WD40-repeat-containing domain superfamilyHomologous Superfamily
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
IPR001680WD40 repeatRepeat
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
IPR020472G-protein beta WD-40 repeatRepeat
HB [auth w]IPR029000Cyclophilin-like domain superfamilyHomologous Superfamily
HB [auth w]IPR002130Cyclophilin-type peptidyl-prolyl cis-trans isomerase domainDomain
HB [auth w]IPR044666Cyclophilin-type peptidyl-prolyl cis-trans isomerase, cyclophilin A-likeFamily
HB [auth w]IPR036322WD40-repeat-containing domain superfamilyHomologous Superfamily
HB [auth w]IPR001680WD40 repeatRepeat
HB [auth w]IPR015943WD40/YVTN repeat-like-containing domain superfamilyHomologous Superfamily
JB [auth y]IPR029000Cyclophilin-like domain superfamilyHomologous Superfamily
JB [auth y]IPR002130Cyclophilin-type peptidyl-prolyl cis-trans isomerase domainDomain
JB [auth y]IPR034168Peptidyl-prolyl cis-trans isomerase E, RNA recognition motifDomain
JB [auth y]IPR016304Peptidyl-prolyl cis-trans isomerase EFamily
JB [auth y]IPR020892Cyclophilin-type peptidyl-prolyl cis-trans isomerase, conserved siteConserved Site
JB [auth y]IPR000504RNA recognition motif domainDomain
JB [auth y]IPR012677Nucleotide-binding alpha-beta plait domain superfamilyHomologous Superfamily
JB [auth y]IPR035979RNA-binding domain superfamilyHomologous Superfamily
KB [auth z]IPR009269NF-kappa-B-activating protein, C-terminalDomain
KB [auth z]IPR040466NF-kappa-B-activating proteinFamily
F [auth 50]IPR048337FAM50A/XAP5, C-terminal domainDomain
F [auth 50]IPR007005XAP5 proteinFamily
G [auth 56]IPR029704STEEP-likeFamily
I [auth 7]IPR000629ATP-dependent RNA helicase DEAD-box, conserved siteConserved Site
I [auth 7]IPR014014RNA helicase, DEAD-box type, Q motifDomain
I [auth 7]IPR011545DEAD/DEAH box helicase domainDomain
I [auth 7]IPR027417P-loop containing nucleoside triphosphate hydrolaseHomologous Superfamily
I [auth 7]IPR001650Helicase, C-terminal domain-likeDomain
I [auth 7]IPR014001Helicase superfamily 1/2, ATP-binding domainDomain

Pharos: Disease Associations Pharos Homepage Annotation

ChainsDrug Target  Associated Disease
W [auth K]PharosO75934
AA [auth NO]PharosQ9Y314
IB [auth x]PharosQ9NZ63
A [auth 1]PharosQ9H875
J [auth 8]PharosQ9Y5S9
K [auth 9]PharosP61326
L [auth A]PharosQ6P2Q9
M [auth B]PharosO75643
N [auth C]PharosQ15029
P [auth E]PharosQ96DI7
R [auth F]PharosQ8WUQ7
S [auth H]PharosQ9HCG8
T [auth I]PharosQ9HCS7
V [auth J]PharosQ9BZJ0
X [auth L]PharosQ99459
Y [auth M]PharosO95926
Z [auth N]PharosP41223
BA [auth O]PharosQ9NW64
CA [auth P]PharosQ9P013
C [auth 3]PharosQ96DF8
DA [auth Q]PharosO60306
EA [auth R]PharosQ13573
FA [auth S]PharosQ9Y3C6
GA [auth SR]PharosQ9UQ35
HA [auth T]PharosO43660
IA [auth U]PharosO95391
JA [auth V]PharosQ14562
KA [auth W]PharosO60508
LA [auth X]PharosQ6IQ49
MA [auth Z]PharosQ8WUD4
D [auth 32]PharosQ9Y421
NA [auth a],
UA [auth h]
PharosP62318
OA [auth b],
VA [auth i]
PharosP14678
PA [auth c],
WA [auth j]
PharosP62314
QA [auth d],
XA [auth k]
PharosP62316
RA [auth e],
YA [auth l]
PharosP62304
SA [auth f],
ZA [auth m]
PharosP62306
AB [auth n],
TA [auth g]
PharosP62308
CB [auth p]PharosP08579
DB [auth q],
EB [auth r],
FB [auth s],
GB [auth t]
PharosQ9UMS4
HB [auth w]PharosQ96BP3
JB [auth y]PharosQ9UNP9
KB [auth z]PharosQ8N5F7
F [auth 50]PharosQ14320
G [auth 56]PharosQ9H5V9
I [auth 7]PharosP38919

Protein Modification Annotation

Modified Residue(s)
ChainResidue(s)Description
EA [auth R]SEP Parent Component: SER

RESIDAA0037

PSI-MOD :  O-phospho-L-serine MOD:00046