Literature DB >> 25951518

Coordination of peptidoglycan synthesis and outer membrane constriction during Escherichia coli cell division.

Andrew N Gray1, Alexander J F Egan2, Inge L Van't Veer3, Jolanda Verheul4, Alexandre Colavin5, Alexandra Koumoutsi6, Jacob Biboy2, A F Maarten Altelaar7, Mirjam J Damen7, Kerwyn Casey Huang5, Jean-Pierre Simorre8, Eefjan Breukink3, Tanneke den Blaauwen4, Athanasios Typas6, Carol A Gross1, Waldemar Vollmer2.   

Abstract

To maintain cellular structure and integrity during division, Gram-negative bacteria must carefully coordinate constriction of a tripartite cell envelope of inner membrane, peptidoglycan (PG), and outer membrane (OM). It has remained enigmatic how this is accomplished. Here, we show that envelope machines facilitating septal PG synthesis (PBP1B-LpoB complex) and OM constriction (Tol system) are physically and functionally coordinated via YbgF, renamed CpoB (Coordinator of PG synthesis and OM constriction, associated with PBP1B). CpoB localizes to the septum concurrent with PBP1B-LpoB and Tol at the onset of constriction, interacts with both complexes, and regulates PBP1B activity in response to Tol energy state. This coordination links PG synthesis with OM invagination and imparts a unique mode of bifunctional PG synthase regulation by selectively modulating PBP1B cross-linking activity. Coordination of the PBP1B and Tol machines by CpoB contributes to effective PBP1B function in vivo and maintenance of cell envelope integrity during division.

Entities:  

Keywords:  E. coli; cell division; cell envelope; infectious disease; microbiology; outer membrane; peptidoglycan

Mesh:

Substances:

Year:  2015        PMID: 25951518      PMCID: PMC4458516          DOI: 10.7554/eLife.07118

Source DB:  PubMed          Journal:  Elife        ISSN: 2050-084X            Impact factor:   8.140


  96 in total

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