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  4. Outer membrane lipoprotein NlpI scaffolds peptidoglycan hydrolases within multi-enzyme complexes in Escherichia coli
 
research article

Outer membrane lipoprotein NlpI scaffolds peptidoglycan hydrolases within multi-enzyme complexes in Escherichia coli

Banzhaf, Manuel
•
Yau, Hamish C. L.
•
Verheul, Jolanda
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February 3, 2020
Embo Journal

The peptidoglycan (PG) sacculus provides bacteria with the mechanical strength to maintain cell shape and resist osmotic stress. Enlargement of the mesh-like sacculus requires the combined activity of peptidoglycan synthases and hydrolases. In Escherichia coli, the activity of two PG synthases is driven by lipoproteins anchored in the outer membrane (OM). However, the regulation of PG hydrolases is less well understood, with only regulators for PG amidases having been described. Here, we identify the OM lipoprotein NlpI as a general adaptor protein for PG hydrolases. NlpI binds to different classes of hydrolases and can specifically form complexes with various PG endopeptidases. In addition, NlpI seems to contribute both to PG elongation and division biosynthetic complexes based on its localization and genetic interactions. Consistent with such a role, we reconstitute PG multi-enzyme complexes containing NlpI, the PG synthesis regulator LpoA, its cognate bifunctional synthase, PBP1A, and different endopeptidases. Our results indicate that peptidoglycan regulators and adaptors are part of PG biosynthetic multi-enzyme complexes, regulating and potentially coordinating the spatiotemporal action of PG synthases and hydrolases.

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Type
research article
DOI
10.15252/embj.2019102246
Web of Science ID

WOS:000510465200001

Author(s)
Banzhaf, Manuel
Yau, Hamish C. L.
Verheul, Jolanda
Lodge, Adam
Kritikos, George
Mateus, Andre
Cordier, Baptiste
Hov, Ann Kristin  
Stein, Frank
Wartel, Morgane
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Date Issued

2020-02-03

Publisher

WILEY

Published in
Embo Journal
Article Number

e102246

Subjects

Biochemistry & Molecular Biology

•

Cell Biology

•

bacterial cell envelope

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endopeptidase

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outer membrane lipoprotein

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penicillin-binding protein

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peptidoglycan

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daughter cell-separation

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tetratricopeptide repeat

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crystal-structure

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lytm-domain

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protein

•

wall

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murein

•

identification

•

binding

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activator

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPDEPLA  
Available on Infoscience
March 3, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/166880
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