Loading
PDBj
MenuPDBj@FacebookPDBj@X(formerly Twitter)PDBj@BlueSkyPDBj@YouTubewwPDB FoundationwwPDBDonate
RCSB PDBPDBeBMRBAdv. SearchSearch help

4AXO

Structure of the Clostridium difficile EutQ protein

Summary for 4AXO
Entry DOI10.2210/pdb4axo/pdb
DescriptorETHANOLAMINE UTILIZATION PROTEIN, MAGNESIUM ION (3 entities in total)
Functional Keywordsstructural protein, bacterial microcompartment, bmc
Biological sourceCLOSTRIDIUM DIFFICILE
Total number of polymer chains2
Total formula weight34294.75
Authors
Pitts, A.C.,Tuck, L.R.,Faulds-Pain, A.,Lewis, R.J.,Marles-Wright, J. (deposition date: 2012-06-13, release date: 2012-06-27, Last modification date: 2023-12-20)
Primary citationPitts, A.C.,Tuck, L.R.,Faulds-Pain, A.,Lewis, R.J.,Marles-Wright, J.
Structural Insight Into the Clostridium Difficile Ethanolamine Utilisation Microcompartment.
Plos One, 7:48360-, 2012
Cited by
PubMed Abstract: Bacterial microcompartments form a protective proteinaceous barrier around metabolic enzymes that process unstable or toxic chemical intermediates. The genome of the virulent, multidrug-resistant Clostridium difficile 630 strain contains an operon, eut, encoding a bacterial microcompartment with genes for the breakdown of ethanolamine and its utilisation as a source of reduced nitrogen and carbon. The C. difficile eut operon displays regulatory genetic elements and protein encoding regions in common with homologous loci found in the genomes of other bacteria, including the enteric pathogens Salmonella enterica and Enterococcus faecalis. The crystal structures of two microcompartment shell proteins, CD1908 and CD1918, and an uncharacterised protein with potential enzymatic activity, CD1925, were determined by X-ray crystallography. CD1908 and CD1918 display the same protein fold, though the order of secondary structure elements is permuted in CD1908 and this protein displays an N-terminal β-strand extension. These proteins form hexamers with molecules related by crystallographic and non-crystallographic symmetry. The structure of CD1925 has a cupin β-barrel fold and a putative active site that is distinct from the metal-ion dependent catalytic cupins. Thin-section transmission electron microscopy of Escherichia coli over-expressing eut proteins indicates that CD1918 is capable of self-association into arrays, suggesting an organisational role for CD1918 in the formation of this microcompartment. The work presented provides the basis for further study of the architecture and function of the C. difficile eut microcompartment, its role in metabolism and the wider consequences of intestinal colonisation and virulence in this pathogen.
PubMed: 23144756
DOI: 10.1371/JOURNAL.PONE.0048360
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1 Å)
Structure validation

246905

PDB entries from 2025-12-31

PDB statisticsPDBj update infoContact PDBjnumon