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Structural Basis of the Heterodimer Formation between Cell Shape-Determining Proteins Csd1 and Csd2 from Helicobacter pylori

Colonization of the human gastric mucosa by Helicobacter pylori requires its high motility, which depends on the helical cell shape. In H. pylori, several genes (csd1, csd2, csd3/hdpA, ccmA, csd4, csd5, and csd6) play key roles in determining the cell shape by alteration of cross-linking or by trimm...

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Autores principales: An, Doo Ri, Im, Ha Na, Jang, Jun Young, Kim, Hyoun Sook, Kim, Jieun, Yoon, Hye Jin, Hesek, Dusan, Lee, Mijoon, Mobashery, Shahriar, Kim, Soon-Jong, Suh, Se Won
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5053510/
https://www.ncbi.nlm.nih.gov/pubmed/27711177
http://dx.doi.org/10.1371/journal.pone.0164243
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author An, Doo Ri
Im, Ha Na
Jang, Jun Young
Kim, Hyoun Sook
Kim, Jieun
Yoon, Hye Jin
Hesek, Dusan
Lee, Mijoon
Mobashery, Shahriar
Kim, Soon-Jong
Suh, Se Won
author_facet An, Doo Ri
Im, Ha Na
Jang, Jun Young
Kim, Hyoun Sook
Kim, Jieun
Yoon, Hye Jin
Hesek, Dusan
Lee, Mijoon
Mobashery, Shahriar
Kim, Soon-Jong
Suh, Se Won
author_sort An, Doo Ri
collection PubMed
description Colonization of the human gastric mucosa by Helicobacter pylori requires its high motility, which depends on the helical cell shape. In H. pylori, several genes (csd1, csd2, csd3/hdpA, ccmA, csd4, csd5, and csd6) play key roles in determining the cell shape by alteration of cross-linking or by trimming of peptidoglycan stem peptides. H. pylori Csd1, Csd2, and Csd3/HdpA are M23B metallopeptidase family members and may act as d,d-endopeptidases to cleave the d-Ala(4)-mDAP(3) peptide bond of cross-linked dimer muropeptides. Csd3 functions also as the d,d-carboxypeptidase to cleave the d-Ala(4)-d-Ala(5) bond of the muramyl pentapeptide. To provide a basis for understanding molecular functions of Csd1 and Csd2, we have carried out their structural characterizations. We have discovered that (i) Csd2 exists in monomer-dimer equilibrium and (ii) Csd1 and Csd2 form a heterodimer. We have determined crystal structures of the Csd2(121–308) homodimer and the heterodimer between Csd1(125–312) and Csd2(121–308). Overall structures of Csd1(125–312) and Csd2(121–308) monomers are similar to each other, consisting of a helical domain and a LytM domain. The helical domains of both Csd1 and Csd2 play a key role in the formation of homodimers or heterodimers. The Csd1 LytM domain contains a catalytic site with a Zn(2+) ion, which is coordinated by three conserved ligands and two water molecules, whereas the Csd2 LytM domain has incomplete metal ligands and no metal ion is bound. Structural knowledge of these proteins sheds light on the events that regulate the cell wall in H. pylori.
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spelling pubmed-50535102016-10-27 Structural Basis of the Heterodimer Formation between Cell Shape-Determining Proteins Csd1 and Csd2 from Helicobacter pylori An, Doo Ri Im, Ha Na Jang, Jun Young Kim, Hyoun Sook Kim, Jieun Yoon, Hye Jin Hesek, Dusan Lee, Mijoon Mobashery, Shahriar Kim, Soon-Jong Suh, Se Won PLoS One Research Article Colonization of the human gastric mucosa by Helicobacter pylori requires its high motility, which depends on the helical cell shape. In H. pylori, several genes (csd1, csd2, csd3/hdpA, ccmA, csd4, csd5, and csd6) play key roles in determining the cell shape by alteration of cross-linking or by trimming of peptidoglycan stem peptides. H. pylori Csd1, Csd2, and Csd3/HdpA are M23B metallopeptidase family members and may act as d,d-endopeptidases to cleave the d-Ala(4)-mDAP(3) peptide bond of cross-linked dimer muropeptides. Csd3 functions also as the d,d-carboxypeptidase to cleave the d-Ala(4)-d-Ala(5) bond of the muramyl pentapeptide. To provide a basis for understanding molecular functions of Csd1 and Csd2, we have carried out their structural characterizations. We have discovered that (i) Csd2 exists in monomer-dimer equilibrium and (ii) Csd1 and Csd2 form a heterodimer. We have determined crystal structures of the Csd2(121–308) homodimer and the heterodimer between Csd1(125–312) and Csd2(121–308). Overall structures of Csd1(125–312) and Csd2(121–308) monomers are similar to each other, consisting of a helical domain and a LytM domain. The helical domains of both Csd1 and Csd2 play a key role in the formation of homodimers or heterodimers. The Csd1 LytM domain contains a catalytic site with a Zn(2+) ion, which is coordinated by three conserved ligands and two water molecules, whereas the Csd2 LytM domain has incomplete metal ligands and no metal ion is bound. Structural knowledge of these proteins sheds light on the events that regulate the cell wall in H. pylori. Public Library of Science 2016-10-06 /pmc/articles/PMC5053510/ /pubmed/27711177 http://dx.doi.org/10.1371/journal.pone.0164243 Text en © 2016 An et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
An, Doo Ri
Im, Ha Na
Jang, Jun Young
Kim, Hyoun Sook
Kim, Jieun
Yoon, Hye Jin
Hesek, Dusan
Lee, Mijoon
Mobashery, Shahriar
Kim, Soon-Jong
Suh, Se Won
Structural Basis of the Heterodimer Formation between Cell Shape-Determining Proteins Csd1 and Csd2 from Helicobacter pylori
title Structural Basis of the Heterodimer Formation between Cell Shape-Determining Proteins Csd1 and Csd2 from Helicobacter pylori
title_full Structural Basis of the Heterodimer Formation between Cell Shape-Determining Proteins Csd1 and Csd2 from Helicobacter pylori
title_fullStr Structural Basis of the Heterodimer Formation between Cell Shape-Determining Proteins Csd1 and Csd2 from Helicobacter pylori
title_full_unstemmed Structural Basis of the Heterodimer Formation between Cell Shape-Determining Proteins Csd1 and Csd2 from Helicobacter pylori
title_short Structural Basis of the Heterodimer Formation between Cell Shape-Determining Proteins Csd1 and Csd2 from Helicobacter pylori
title_sort structural basis of the heterodimer formation between cell shape-determining proteins csd1 and csd2 from helicobacter pylori
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5053510/
https://www.ncbi.nlm.nih.gov/pubmed/27711177
http://dx.doi.org/10.1371/journal.pone.0164243
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