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Phosphorylation-dependent activation of the cell wall synthase PBP2a in Streptococcus pneumoniae by MacP.
Fenton, Andrew K; Manuse, Sylvie; Flores-Kim, Josué; Garcia, Pierre Simon; Mercy, Chryslène; Grangeasse, Christophe; Bernhardt, Thomas G; Rudner, David Z.
Affiliation
  • Fenton AK; Department of Microbiology and Immunobiology, Harvard Medical School; Boston, MA 02115; a.k.fenton@sheffield.ac.uk c.grangeasse@ibcp.fr thomas_bernhardt@hms.harvard.edu david_rudner@hms.harvard.edu.
  • Manuse S; The Florey Institute, University of Sheffield, S10 2TN Sheffield, United Kingdom.
  • Flores-Kim J; Molecular Biology Biotechnology, University of Sheffield, S10 2TN Sheffield, United Kingdom.
  • Garcia PS; Molecular Microbiology and Structural Biochemistry, UMR 5086, CNRS, Université de Lyon, 69367 Lyon, France.
  • Mercy C; Department of Microbiology and Immunobiology, Harvard Medical School; Boston, MA 02115.
  • Grangeasse C; Molecular Microbiology and Structural Biochemistry, UMR 5086, CNRS, Université de Lyon, 69367 Lyon, France.
  • Bernhardt TG; Molecular Microbiology and Structural Biochemistry, UMR 5086, CNRS, Université de Lyon, 69367 Lyon, France.
  • Rudner DZ; Molecular Microbiology and Structural Biochemistry, UMR 5086, CNRS, Université de Lyon, 69367 Lyon, France a.k.fenton@sheffield.ac.uk c.grangeasse@ibcp.fr thomas_bernhardt@hms.harvard.edu david_rudner@hms.harvard.edu.
Proc Natl Acad Sci U S A ; 115(11): 2812-2817, 2018 03 13.
Article in En | MEDLINE | ID: mdl-29487215
ABSTRACT
Most bacterial cells are surrounded by an essential cell wall composed of the net-like heteropolymer peptidoglycan (PG). Growth and division of bacteria are intimately linked to the expansion of the PG meshwork and the construction of a cell wall septum that separates the nascent daughter cells. Class A penicillin-binding proteins (aPBPs) are a major family of PG synthases that build the wall matrix. Given their central role in cell wall assembly and importance as drug targets, surprisingly little is known about how the activity of aPBPs is controlled to properly coordinate cell growth and division. Here, we report the identification of MacP (SPD_0876) as a membrane-anchored cofactor of PBP2a, an aPBP synthase of the Gram-positive pathogen Streptococcus pneumoniae We show that MacP localizes to the division site of S. pneumoniae, forms a complex with PBP2a, and is required for the in vivo activity of the synthase. Importantly, MacP was also found to be a substrate for the kinase StkP, a global cell cycle regulator. Although StkP has been implicated in controlling the balance between the elongation and septation modes of cell wall synthesis, none of its substrates are known to modulate PG synthetic activity. Here we show that a phosphoablative substitution in MacP that blocks StkP-mediated phosphorylation prevents PBP2a activity without affecting the MacP-PBP2a interaction. Our results thus reveal a direct connection between PG synthase function and the control of cell morphogenesis by the StkP regulatory network.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Streptococcus pneumoniae / Bacterial Proteins / Cell Wall / Coenzymes / Penicillin-Binding Proteins Language: En Journal: Proc Natl Acad Sci U S A Year: 2018 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Streptococcus pneumoniae / Bacterial Proteins / Cell Wall / Coenzymes / Penicillin-Binding Proteins Language: En Journal: Proc Natl Acad Sci U S A Year: 2018 Document type: Article