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22GU

Crystal structure of the CJ1041C protein from Campylobacter jejuni in complex with Ca2+ in space group P212121

Summary for 22GU
Entry DOI10.2210/pdb22gu/pdb
DescriptorCJ1041C, CALCIUM ION, GLYCEROL, ... (4 entities in total)
Functional Keywordsmetal-binding protein, ca2+, beta propeller, metal binding protein
Biological sourceCampylobacter jejuni
Total number of polymer chains1
Total formula weight30818.69
Authors
Park, M.A.,Yoon, S.I. (deposition date: 2026-01-10, release date: 2026-04-01, Last modification date: 2026-09-30)
Primary citationPark, M.A.,Yoon, S.I.
beta-Propeller structure of the CJ1041C protein from Campylobacter jejuni and its interaction with Ca 2+ ions.
Sci Rep, 16:-, 2026
Cited by
PubMed Abstract: Campylobacter jejuni is the leading bacterial cause of foodborne enteric disease worldwide. The increasing emergence of antibiotic-resistant C. jejuni strains underscores the need to identify new protein targets for antibacterial drug development through the functional characterization of previously unstudied C. jejuni proteins. One such protein whose function has not been experimentally investigated is CJ1041C. To gain insight into the role of CJ1041C, we determined its crystal structures in both the apo form and in complex with Ca ions. CJ1041C adopts a six-bladed β-propeller architecture, in which six four-stranded β-sheets are radially arranged around a central channel. This channel is occluded in the middle and harbors two oppositely oriented, negatively charged cavities. Notably, the upper cavity coordinates a Ca ion through highly conserved residues and additionally accommodates a glycerol molecule presumably as a substrate-water mimic. The Ca-binding configuration of CJ1041C closely resembles that observed in β-propeller lactonases, suggesting that CJ1041C functions as a lactonase or lactonase-like enzyme. However, the unique glycerol-binding mode of CJ1041C, combined with the results of phylogenetic and sequence analyses, indicates that CJ1041C represents a distinct member of the β-propeller lactonase family that likely exerts catalytic activity toward noncanonical substrates.
PubMed: 42744853
DOI: 10.1038/s41598-026-64794-0
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.5 Å)
Structure validation

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PDB entries from 2026-09-30

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