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Open AccessJournal ArticleDOI

Endopeptidase penicillin-binding proteins 4 and 7 play auxiliary roles in determining uniform morphology of Escherichia coli

TLDR
Overall cell shape may be determined by the existence or location of a specific type of peptide cross-link, with PBP 5 activity influencing how many cross- links are made and PBPs 4 and 7 acting as editing enzymes to remove inappropriate cross-links.
Abstract
The low-molecular-weight (LMW) penicillin-binding protein, PBP 5, plays a dominant role in determining the uniform cell shape of Escherichia coli. However, the physiological functions of six other LMW PBPs are unknown, even though the existence and enzymatic activities of four of these were established three decades ago. By applying fluorescence-activated cell sorting (FACS) to quantify the cellular dimensions of multiple PBP mutants, we found that the endopeptidases PBP 4 and PBP 7 also influence cell shape in concert with PBP 5. This is the first reported biological function for these two proteins. In addition, the combined loss of three dd-carboxypeptidases, PBPs 5 and 6 and DacD, also impaired cell shape. In contrast to previous reports based on visual inspection alone, FACS analysis revealed aberrant morphology in a mutant lacking only PBP 5, a phenotype not shared by any other strain lacking a single LMW PBP. PBP 5 removes the terminal d-alanine from pentapeptide side chains of muropeptide subunits, and pentapeptides act as donors for cross-linking adjacent side chains. As endopeptidases, PBPs 4 and 7 cleave cross-links in the cell wall. Therefore, overall cell shape may be determined by the existence or location of a specific type of peptide cross-link, with PBP 5 activity influencing how many cross-links are made and PBPs 4 and 7 acting as editing enzymes to remove inappropriate cross-links.

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Citations
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Journal ArticleDOI

The penicillin-binding proteins: structure and role in peptidoglycan biosynthesis

TL;DR: An overview of the content in PBPs of some bacteria is provided with an emphasis on comparing the biochemical properties of homologous PBPs (orthologues) belonging to different bacteria.
Journal ArticleDOI

The Selective Value of Bacterial Shape

TL;DR: The aim of this review is to spell out the physical, environmental, and biological forces that favor different bacterial morphologies and which, therefore, contribute to natural selection.
Journal ArticleDOI

Bacterial peptidoglycan (murein) hydrolases.

TL;DR: The current view on the regulation of autolysins and on the role of cytoplasm hydrolases in peptidoglycan recycling and induction of beta-lactamase is reviewed.
Journal ArticleDOI

Bacterial Cell Wall Synthesis: New Insights from Localization Studies

TL;DR: A model in which, at least for a subset of PBPs, the presence of substrate is a major factor in determining PBP localization is discussed, in both rod-shaped and coccoid cells.
Journal ArticleDOI

Bacterial cell shape

TL;DR: How a bacterium gains and maintains its shape, the challenges still confronting us and emerging strategies for answering difficult questions in this rapidly evolving field are discussed.
References
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Journal ArticleDOI

Effects of Penicillin-Binding Protein 4 Overproduction in Staphylococcus aureus

TL;DR: The in vitro step selected mutant showed a remarkable increase in the cross-linking of the peptidoglycan compared to its parent, linked to morphological changes in the appearance of the cells, which were surrounded by a very thick and fuzzy cell wall.
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