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Peptidoglycan reshaping by a noncanonical peptidase for helical cell shape in Campylobacter jejuni.


ABSTRACT: Assembly of the peptidoglycan is crucial in maintaining viability of bacteria and in defining bacterial cell shapes, both of which are important for existence in the ecological niche that the organism occupies. Here, eight crystal structures for a member of the cell-shape-determining class of Campylobacter jejuni, the peptidoglycan peptidase 3 (Pgp3), are reported. Characterization of the turnover chemistry of Pgp3 reveals cell wall D,D-endopeptidase and D,D-carboxypeptidase activities. Catalysis is accompanied by large conformational changes upon peptidoglycan binding, whereby a loop regulates access to the active site. Furthermore, prior hydrolysis of the crosslinked peptide stem from the saccharide backbone of the peptidoglycan on one side is a pre-requisite for its recognition and turnover by Pgp3. These analyses reveal the noncanonical nature of the transformations at the core of the events that define the morphological shape for C. jejuni as an intestinal pathogen.

SUBMITTER: Min K 

PROVIDER: S-EPMC6978369 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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Peptidoglycan reshaping by a noncanonical peptidase for helical cell shape in Campylobacter jejuni.

Min Kyungjin K   An Doo Ri DR   Yoon Hye-Jin HJ   Rana Neha N   Park Ji Su JS   Kim Jinshil J   Lee Mijoon M   Hesek Dusan D   Ryu Sangryeol S   Kim B Moon BM   Mobashery Shahriar S   Suh Se Won SW   Lee Hyung Ho HH  

Nature communications 20200123 1


Assembly of the peptidoglycan is crucial in maintaining viability of bacteria and in defining bacterial cell shapes, both of which are important for existence in the ecological niche that the organism occupies. Here, eight crystal structures for a member of the cell-shape-determining class of Campylobacter jejuni, the peptidoglycan peptidase 3 (Pgp3), are reported. Characterization of the turnover chemistry of Pgp3 reveals cell wall D,D-endopeptidase and D,D-carboxypeptidase activities. Catalysi  ...[more]

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