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Lipoprotein DolP supports proper folding of BamA in the bacterial outer membrane promoting fitness upon envelope stress

In Proteobacteria, integral outer membrane proteins (OMPs) are crucial for the maintenance of the envelope permeability barrier to some antibiotics and detergents. In Enterobacteria, envelope stress caused by unfolded OMPs activates the sigmaE (σ(E)) transcriptional response. σ(E) upregulates OMP bi...

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Autores principales: Ranava, David, Yang, Yiying, Orenday-Tapia, Luis, Rousset, François, Turlan, Catherine, Morales, Violette, Cui, Lun, Moulin, Cyril, Froment, Carine, Munoz, Gladys, Rech, Jérôme, Marcoux, Julien, Caumont-Sarcos, Anne, Albenne, Cécile, Bikard, David, Ieva, Raffaele
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8081527/
https://www.ncbi.nlm.nih.gov/pubmed/33847565
http://dx.doi.org/10.7554/eLife.67817
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author Ranava, David
Yang, Yiying
Orenday-Tapia, Luis
Rousset, François
Turlan, Catherine
Morales, Violette
Cui, Lun
Moulin, Cyril
Froment, Carine
Munoz, Gladys
Rech, Jérôme
Marcoux, Julien
Caumont-Sarcos, Anne
Albenne, Cécile
Bikard, David
Ieva, Raffaele
author_facet Ranava, David
Yang, Yiying
Orenday-Tapia, Luis
Rousset, François
Turlan, Catherine
Morales, Violette
Cui, Lun
Moulin, Cyril
Froment, Carine
Munoz, Gladys
Rech, Jérôme
Marcoux, Julien
Caumont-Sarcos, Anne
Albenne, Cécile
Bikard, David
Ieva, Raffaele
author_sort Ranava, David
collection PubMed
description In Proteobacteria, integral outer membrane proteins (OMPs) are crucial for the maintenance of the envelope permeability barrier to some antibiotics and detergents. In Enterobacteria, envelope stress caused by unfolded OMPs activates the sigmaE (σ(E)) transcriptional response. σ(E) upregulates OMP biogenesis factors, including the β-barrel assembly machinery (BAM) that catalyses OMP folding. Here we report that DolP (formerly YraP), a σ(E)-upregulated and poorly understood outer membrane lipoprotein, is crucial for fitness in cells that undergo envelope stress. We demonstrate that DolP interacts with the BAM complex by associating with outer membrane-assembled BamA. We provide evidence that DolP is important for proper folding of BamA that overaccumulates in the outer membrane, thus supporting OMP biogenesis and envelope integrity. Notably, mid-cell recruitment of DolP had been linked to regulation of septal peptidoglycan remodelling by an unknown mechanism. We now reveal that, during envelope stress, DolP loses its association with the mid-cell, thereby suggesting a mechanistic link between envelope stress caused by impaired OMP biogenesis and the regulation of a late step of cell division.
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spelling pubmed-80815272021-04-30 Lipoprotein DolP supports proper folding of BamA in the bacterial outer membrane promoting fitness upon envelope stress Ranava, David Yang, Yiying Orenday-Tapia, Luis Rousset, François Turlan, Catherine Morales, Violette Cui, Lun Moulin, Cyril Froment, Carine Munoz, Gladys Rech, Jérôme Marcoux, Julien Caumont-Sarcos, Anne Albenne, Cécile Bikard, David Ieva, Raffaele eLife Microbiology and Infectious Disease In Proteobacteria, integral outer membrane proteins (OMPs) are crucial for the maintenance of the envelope permeability barrier to some antibiotics and detergents. In Enterobacteria, envelope stress caused by unfolded OMPs activates the sigmaE (σ(E)) transcriptional response. σ(E) upregulates OMP biogenesis factors, including the β-barrel assembly machinery (BAM) that catalyses OMP folding. Here we report that DolP (formerly YraP), a σ(E)-upregulated and poorly understood outer membrane lipoprotein, is crucial for fitness in cells that undergo envelope stress. We demonstrate that DolP interacts with the BAM complex by associating with outer membrane-assembled BamA. We provide evidence that DolP is important for proper folding of BamA that overaccumulates in the outer membrane, thus supporting OMP biogenesis and envelope integrity. Notably, mid-cell recruitment of DolP had been linked to regulation of septal peptidoglycan remodelling by an unknown mechanism. We now reveal that, during envelope stress, DolP loses its association with the mid-cell, thereby suggesting a mechanistic link between envelope stress caused by impaired OMP biogenesis and the regulation of a late step of cell division. eLife Sciences Publications, Ltd 2021-04-13 /pmc/articles/PMC8081527/ /pubmed/33847565 http://dx.doi.org/10.7554/eLife.67817 Text en © 2021, Ranava et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Microbiology and Infectious Disease
Ranava, David
Yang, Yiying
Orenday-Tapia, Luis
Rousset, François
Turlan, Catherine
Morales, Violette
Cui, Lun
Moulin, Cyril
Froment, Carine
Munoz, Gladys
Rech, Jérôme
Marcoux, Julien
Caumont-Sarcos, Anne
Albenne, Cécile
Bikard, David
Ieva, Raffaele
Lipoprotein DolP supports proper folding of BamA in the bacterial outer membrane promoting fitness upon envelope stress
title Lipoprotein DolP supports proper folding of BamA in the bacterial outer membrane promoting fitness upon envelope stress
title_full Lipoprotein DolP supports proper folding of BamA in the bacterial outer membrane promoting fitness upon envelope stress
title_fullStr Lipoprotein DolP supports proper folding of BamA in the bacterial outer membrane promoting fitness upon envelope stress
title_full_unstemmed Lipoprotein DolP supports proper folding of BamA in the bacterial outer membrane promoting fitness upon envelope stress
title_short Lipoprotein DolP supports proper folding of BamA in the bacterial outer membrane promoting fitness upon envelope stress
title_sort lipoprotein dolp supports proper folding of bama in the bacterial outer membrane promoting fitness upon envelope stress
topic Microbiology and Infectious Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8081527/
https://www.ncbi.nlm.nih.gov/pubmed/33847565
http://dx.doi.org/10.7554/eLife.67817
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