Domain Annotation: SCOP/SCOPe Classification SCOP-e Database Homepage

ChainsDomain InfoClassFoldSuperfamilyFamilyDomainSpeciesProvenance Source (Version)
Ad2bv6a1 All alpha proteins DNA/RNA-binding 3-helical bundle 'Winged helix' DNA-binding domain MarR-like transcriptional regulators Transcriptional regulator MgrA (Staphylococcus aureus ) [TaxId: 1280 ], SCOPe (2.08)
Ad2bv6a2 Artifacts Tags Tags Tags N-terminal Tags (Staphylococcus aureus ) [TaxId: 1280 ], SCOPe (2.08)

Domain Annotation: SCOP2 Classification SCOP2 Database Homepage

ChainsTypeFamily Name Domain Identifier Family IdentifierProvenance Source (Version)
ASCOP2 FamilyMarR-like transcriptional regulators 8054303 4000246 SCOP2 (2021-05-27)
ASCOP2 SuperfamilyWinged helix DNA-binding domain 8054304 3000034 SCOP2 (2021-05-27)

Domain Annotation: ECOD Classification ECOD Database Homepage

ChainsFamily NameDomain Identifier ArchitecturePossible HomologyHomologyTopologyFamilyProvenance Source (Version)
APF22381e2bv6A1 A: alpha arraysX: HTHH: HTHT: wingedF: PF22381ECOD (1.6)

Domain Annotation: CATH CATH Database Homepage

ChainDomainClassArchitectureTopologyHomologyProvenance Source (Version)
A1.10.10.10 Mainly Alpha Orthogonal Bundle Arc Repressor Mutant, subunit A Winged helix-like DNA-binding domain superfamily/Winged helix DNA-binding domainCATH (4.3.0)

Protein Family Annotation Pfam Database Homepage

ChainsAccessionNameDescriptionCommentsSource
PF22381Transcriptional regulator SarA/Rot (Staph_reg_Sar_Rot)Transcriptional regulator SarA/RotThis entry represents transcriptional regulatory proteins in Staphylococcal species including SarA and Rot [1-5]. Sar is a global regulator with both positive and negative effects that controls expression of several virulence factors and biofilm form ...This entry represents transcriptional regulatory proteins in Staphylococcal species including SarA and Rot [1-5]. Sar is a global regulator with both positive and negative effects that controls expression of several virulence factors and biofilm formation process in a cell density-dependent manner. Rot plays a key role in regulating S. aureus virulence through activation or repression of promoters that control expression of a large number of critical virulence factors [5].
Domain