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Early midcell localization of Escherichia coli PBP4 supports the function of peptidoglycan amidases

Insertion of new material into the Escherichia coli peptidoglycan (PG) sacculus between the cytoplasmic membrane and the outer membrane requires a well-organized balance between synthetic and hydrolytic activities to maintain cell shape and avoid lysis. Since most bacteria carry multiple enzymes car...

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Autores principales: Verheul, Jolanda, Lodge, Adam, Yau, Hamish C. L., Liu, Xiaolong, Boelter, Gabriela, Liu, Xinwei, Solovyova, Alexandra S., Typas, Athanasios, Banzhaf, Manuel, Vollmer, Waldemar, den Blaauwen, Tanneke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9166362/
https://www.ncbi.nlm.nih.gov/pubmed/35604931
http://dx.doi.org/10.1371/journal.pgen.1010222
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author Verheul, Jolanda
Lodge, Adam
Yau, Hamish C. L.
Liu, Xiaolong
Boelter, Gabriela
Liu, Xinwei
Solovyova, Alexandra S.
Typas, Athanasios
Banzhaf, Manuel
Vollmer, Waldemar
den Blaauwen, Tanneke
author_facet Verheul, Jolanda
Lodge, Adam
Yau, Hamish C. L.
Liu, Xiaolong
Boelter, Gabriela
Liu, Xinwei
Solovyova, Alexandra S.
Typas, Athanasios
Banzhaf, Manuel
Vollmer, Waldemar
den Blaauwen, Tanneke
author_sort Verheul, Jolanda
collection PubMed
description Insertion of new material into the Escherichia coli peptidoglycan (PG) sacculus between the cytoplasmic membrane and the outer membrane requires a well-organized balance between synthetic and hydrolytic activities to maintain cell shape and avoid lysis. Since most bacteria carry multiple enzymes carrying the same type of PG hydrolytic activity, we know little about the specific function of given enzymes. Here we show that the DD-carboxy/endopeptidase PBP4 localizes in a PBP1A/LpoA and FtsEX dependent fashion at midcell during septal PG synthesis. Midcell localization of PBP4 requires its non-catalytic domain 3 of unknown function, but not the activity of PBP4 or FtsE. Microscale thermophoresis with isolated proteins shows that PBP4 interacts with NlpI and the FtsEX-interacting protein EnvC, an activator of amidases AmiA and AmiB, which are needed to generate denuded glycan strands to recruit the initiator of septal PG synthesis, FtsN. The domain 3 of PBP4 is needed for the interaction with NlpI and EnvC, but not PBP1A or LpoA. In vivo crosslinking experiments confirm the interaction of PBP4 with PBP1A and LpoA. We propose that the interaction of PBP4 with EnvC, whilst not absolutely necessary for mid-cell recruitment of either protein, coordinates the activities of PBP4 and the amidases, which affects the formation of denuded glycan strands that attract FtsN. Consistent with this model, we found that the divisome assembly at midcell was premature in cells lacking PBP4, illustrating how the complexity of interactions affect the timing of cell division initiation.
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spelling pubmed-91663622022-06-05 Early midcell localization of Escherichia coli PBP4 supports the function of peptidoglycan amidases Verheul, Jolanda Lodge, Adam Yau, Hamish C. L. Liu, Xiaolong Boelter, Gabriela Liu, Xinwei Solovyova, Alexandra S. Typas, Athanasios Banzhaf, Manuel Vollmer, Waldemar den Blaauwen, Tanneke PLoS Genet Research Article Insertion of new material into the Escherichia coli peptidoglycan (PG) sacculus between the cytoplasmic membrane and the outer membrane requires a well-organized balance between synthetic and hydrolytic activities to maintain cell shape and avoid lysis. Since most bacteria carry multiple enzymes carrying the same type of PG hydrolytic activity, we know little about the specific function of given enzymes. Here we show that the DD-carboxy/endopeptidase PBP4 localizes in a PBP1A/LpoA and FtsEX dependent fashion at midcell during septal PG synthesis. Midcell localization of PBP4 requires its non-catalytic domain 3 of unknown function, but not the activity of PBP4 or FtsE. Microscale thermophoresis with isolated proteins shows that PBP4 interacts with NlpI and the FtsEX-interacting protein EnvC, an activator of amidases AmiA and AmiB, which are needed to generate denuded glycan strands to recruit the initiator of septal PG synthesis, FtsN. The domain 3 of PBP4 is needed for the interaction with NlpI and EnvC, but not PBP1A or LpoA. In vivo crosslinking experiments confirm the interaction of PBP4 with PBP1A and LpoA. We propose that the interaction of PBP4 with EnvC, whilst not absolutely necessary for mid-cell recruitment of either protein, coordinates the activities of PBP4 and the amidases, which affects the formation of denuded glycan strands that attract FtsN. Consistent with this model, we found that the divisome assembly at midcell was premature in cells lacking PBP4, illustrating how the complexity of interactions affect the timing of cell division initiation. Public Library of Science 2022-05-23 /pmc/articles/PMC9166362/ /pubmed/35604931 http://dx.doi.org/10.1371/journal.pgen.1010222 Text en © 2022 Verheul et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Verheul, Jolanda
Lodge, Adam
Yau, Hamish C. L.
Liu, Xiaolong
Boelter, Gabriela
Liu, Xinwei
Solovyova, Alexandra S.
Typas, Athanasios
Banzhaf, Manuel
Vollmer, Waldemar
den Blaauwen, Tanneke
Early midcell localization of Escherichia coli PBP4 supports the function of peptidoglycan amidases
title Early midcell localization of Escherichia coli PBP4 supports the function of peptidoglycan amidases
title_full Early midcell localization of Escherichia coli PBP4 supports the function of peptidoglycan amidases
title_fullStr Early midcell localization of Escherichia coli PBP4 supports the function of peptidoglycan amidases
title_full_unstemmed Early midcell localization of Escherichia coli PBP4 supports the function of peptidoglycan amidases
title_short Early midcell localization of Escherichia coli PBP4 supports the function of peptidoglycan amidases
title_sort early midcell localization of escherichia coli pbp4 supports the function of peptidoglycan amidases
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9166362/
https://www.ncbi.nlm.nih.gov/pubmed/35604931
http://dx.doi.org/10.1371/journal.pgen.1010222
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