9L1W | pdb_00009l1w

3-phenylpropionate bound dioxygenase HcaE-HcaF


Experimental Data Snapshot

  • Method: ELECTRON MICROSCOPY
  • Resolution: 3.10 Å
  • Aggregation State: PARTICLE 
  • Reconstruction Method: SINGLE PARTICLE 

wwPDB Validation   3D Report Full Report


This is version 1.0 of the entry. See complete history


Literature

Structure-guided engineering of a Rieske-type aromatic dioxygenase for enhanced consumption of 3-phenylpropionic acid in Escherichia coli.

Jiang, W.Wu, M.Gong, Z.Han, L.Cheng, X.Tang, X.Yu, X.Dong, X.Cheng, Y.Ma, L.Xing, Q.

(2025) J Hazard Mater 491: 137954-137954

  • DOI: https://doi.org/10.1016/j.jhazmat.2025.137954
  • Primary Citation of Related Structures:  
    9L1W

  • PubMed Abstract: 

    Industrial derived aromatic hydrocarbons are persistent environmental pollutants due to their chemical stability, posing both ecological and health risks. Rieske-type aromatic dioxygenases (RDOs), known for their role in dihydroxylation of aromatic rings, play a pivotal role in microbial consumption and degradation of such compounds. While the industrial application of these enzymes has been impeded by their instability and low biodegradation rate. In this study, we focused on optimization and application of the Rieske-type dioxygenase HcaEF from Escherichia coli (E. coli) K-12, which initializes the degradation of 3-phenylpropionic acid (3-PP) and cinnamic acid (CI). Using cryo-electron microscopy (cryo-EM), we determined the high-resolution structures of the apo-form and 3-PP bound form of HcaEF, revealing key insights into substrate specificity and thermal stability. Leveraging these structural insights, we engineered a Q73I variant of HcaEF. Upon introduction of this mutation, the turnover rate increased from 29.6 % to 43.8 %, showing ∼50 % improvement. Overexpression of this variant in E. coli K-12 significantly enhanced the strain's ability to utilize 3-PP, demonstrating the potential for microbial engineering in environmental bioremediation and industrial applications. Our findings not only deepen the understanding of substrate recognition in RDOs, but also pave the way for developing high-efficiency enzymes for aromatic compound bio-utilization.


  • Organizational Affiliation
    • State Key Laboratory of Biocatalysis and Enzyme Engineering, College of Life Sciences, Hubei University, Wuhan 430074, China.

Macromolecules
Find similar proteins by:  (by identity cutoff)  |  3D Structure
Entity ID: 1
MoleculeChains Sequence LengthOrganismDetailsImage
3-phenylpropionate/cinnamic acid dioxygenase subunit alpha
A, C, E
453Escherichia coli K-12Mutation(s): 0 
Gene Names: hcaEdigAhcaAhcaA1phdC1yfhUb2538JW2522
EC: 1.14.12.19
UniProt
Find proteins for P0ABR5 (Escherichia coli (strain K12))
Explore P0ABR5 
Go to UniProtKB:  P0ABR5
Entity Groups  
Sequence Clusters30% Identity50% Identity70% Identity90% Identity95% Identity100% Identity
UniProt GroupP0ABR5
Sequence Annotations
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  • Reference Sequence
Find similar proteins by:  (by identity cutoff)  |  3D Structure
Entity ID: 2
MoleculeChains Sequence LengthOrganismDetailsImage
3-phenylpropionate/cinnamic acid dioxygenase subunit beta
B, D, F
172Escherichia coli K-12Mutation(s): 0 
Gene Names: hcaFdigBhcaA2hcaBphdC2yfhVb2539JW2523
EC: 1.14.12.19
UniProt
Find proteins for Q47140 (Escherichia coli (strain K12))
Explore Q47140 
Go to UniProtKB:  Q47140
Entity Groups  
Sequence Clusters30% Identity50% Identity70% Identity90% Identity95% Identity100% Identity
UniProt GroupQ47140
Sequence Annotations
Expand
  • Reference Sequence
Small Molecules
Ligands 3 Unique
IDChains Name / Formula / InChI Key2D Diagram3D Interactions
FES (Subject of Investigation/LOI)
Query on FES

Download Ideal Coordinates CCD File 
H [auth A],
K [auth C],
N [auth E]
FE2/S2 (INORGANIC) CLUSTER
Fe2 S2
NIXDOXVAJZFRNF-UHFFFAOYSA-N
HCI (Subject of Investigation/LOI)
Query on HCI

Download Ideal Coordinates CCD File 
I [auth A],
L [auth C],
O [auth E]
HYDROCINNAMIC ACID
C9 H10 O2
XMIIGOLPHOKFCH-UHFFFAOYSA-N
FE2 (Subject of Investigation/LOI)
Query on FE2

Download Ideal Coordinates CCD File 
G [auth A],
J [auth C],
M [auth E]
FE (II) ION
Fe
CWYNVVGOOAEACU-UHFFFAOYSA-N
Experimental Data & Validation

Experimental Data

  • Method: ELECTRON MICROSCOPY
  • Resolution: 3.10 Å
  • Aggregation State: PARTICLE 
  • Reconstruction Method: SINGLE PARTICLE 
EM Software:
TaskSoftware PackageVersion
MODEL REFINEMENTPHENIX

Structure Validation

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Entry History & Funding Information

Deposition Data


Funding OrganizationLocationGrant Number
National Science Foundation (NSF, China)China32371277
National Science Foundation (NSF, China)China32301028

Revision History  (Full details and data files)

  • Version 1.0: 2025-12-10
    Type: Initial release