6DXU

Crystal Structure of Parabacteroides merdae Beta-Glucuronidase (GUS)


Experimental Data Snapshot

  • Method: X-RAY DIFFRACTION
  • Resolution: 1.90 Å
  • R-Value Free: 0.184 
  • R-Value Work: 0.153 
  • R-Value Observed: 0.154 

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Ligand Structure Quality Assessment 


This is version 1.2 of the entry. See complete history


Literature

Active site flexibility revealed in crystal structures of Parabacteroides merdae beta-glucuronidase from the human gut microbiome.

Little, M.S.Ervin, S.M.Walton, W.G.Tripathy, A.Xu, Y.Liu, J.Redinbo, M.R.

(2018) Protein Sci 27: 2010-2022

  • DOI: https://doi.org/10.1002/pro.3507
  • Primary Citation of Related Structures:  
    6D7J, 6DXU

  • PubMed Abstract: 

    β-Glucuronidase (GUS) enzymes in the gastrointestinal tract are involved in maintaining mammalian-microbial symbiosis and can play key roles in drug efficacy and toxicity. Parabacteroides merdae GUS was identified as an abundant mini-Loop 2 (mL2) type GUS enzyme in the Human Microbiome Project gut metagenomic database. Here, we report the crystal structure of P. merdae GUS and highlight the differences between this enzyme and extant structures of gut microbial GUS proteins. We find that P. merdae GUS exhibits a distinct tetrameric quaternary structure and that the mL2 motif traces a unique path within the active site, which also includes two arginines distinctive to this GUS. We observe two states of the P. merdae GUS active site; a loop repositions itself by more than 50 Å to place a functionally-relevant residue into the enzyme's catalytic site. Finally, we find that P. merdae GUS is able to bind to homo and heteropolymers of the polysaccharide alginic acid. Together, these data broaden our understanding of the structural and functional diversity in the GUS family of enzymes present in the human gut microbiome and point to specialization as an important feature of microbial GUS orthologs.


  • Organizational Affiliation

    Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina, 27599-3290.


Macromolecules
Find similar proteins by:  (by identity cutoff)  |  3D Structure
Entity ID: 1
MoleculeChains Sequence LengthOrganismDetailsImage
Glycosyl hydrolase family 2, TIM barrel domain proteinA [auth D],
B [auth A],
C [auth B],
D [auth C]
830Parabacteroides merdae ATCC 43184Mutation(s): 0 
Gene Names: PARMER_02407
Entity Groups  
Sequence Clusters30% Identity50% Identity70% Identity90% Identity95% Identity100% Identity
Sequence Annotations
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  • Reference Sequence
Small Molecules
Ligands 2 Unique
IDChains Name / Formula / InChI Key2D Diagram3D Interactions
BCN
Query on BCN

Download Ideal Coordinates CCD File 
E [auth D],
L [auth C],
M [auth C]
BICINE
C6 H13 N O4
FSVCELGFZIQNCK-UHFFFAOYSA-N
NA
Query on NA

Download Ideal Coordinates CCD File 
F [auth D]
G [auth D]
H [auth A]
I [auth A]
J [auth B]
F [auth D],
G [auth D],
H [auth A],
I [auth A],
J [auth B],
K [auth B],
N [auth C],
O [auth C]
SODIUM ION
Na
FKNQFGJONOIPTF-UHFFFAOYSA-N
Experimental Data & Validation

Experimental Data

  • Method: X-RAY DIFFRACTION
  • Resolution: 1.90 Å
  • R-Value Free: 0.184 
  • R-Value Work: 0.153 
  • R-Value Observed: 0.154 
  • Space Group: P 1 21 1
Unit Cell:
Length ( Å )Angle ( ˚ )
a = 91.371α = 90
b = 163.393β = 103.351
c = 120.607γ = 90
Software Package:
Software NamePurpose
PHENIXrefinement
PHENIXrefinement
XDSdata reduction
XDSdata scaling
PHASERphasing

Structure Validation

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Ligand Structure Quality Assessment 


Entry History & Funding Information

Deposition Data


Funding OrganizationLocationGrant Number
National Institutes of Health/National Human Genome Research Institute (NIH/NHGRI)United StatesCA098468
National Institutes of Health/National Human Genome Research Institute (NIH/NHGRI)United StatesCA207416

Revision History  (Full details and data files)

  • Version 1.0: 2019-02-27
    Type: Initial release
  • Version 1.1: 2019-12-18
    Changes: Author supporting evidence
  • Version 1.2: 2024-03-13
    Changes: Data collection, Database references, Derived calculations, Refinement description