PrkC-mediated Phosphorylation of Overexpressed YvcK Protein Regulates PBP1 Protein Localization in Bacillus subtilis mreB Mutant Cells

被引:33
作者
Foulquier, Elodie [1 ]
Pompeo, Frederique [1 ]
Freton, Celine [1 ,2 ]
Cordier, Baptiste [1 ]
Grangeasse, Christophe [2 ]
Galinier, Anne [1 ]
机构
[1] Aix Marseille Univ, Lab Chim Bacterienne, UMR 7283, Inst Microbiol Mediterranee,CNRS, F-13009 Marseille, France
[2] Univ Lyon, UMR 5086, CNRS, F-69367 Lyon 07, France
关键词
Antibiotic Resistance; Bacillus; Cell Wall; Gluconeogenesis; Morphogenesis; Protein Phosphorylation; MYCOBACTERIUM-TUBERCULOSIS; SER/THR KINASE; DIVISION; GROWTH; BIOSYNTHESIS; BACTERIA; SYSTEM; IDENTIFICATION; MORPHOGENESIS; SPECIFICITY;
D O I
10.1074/jbc.M114.562496
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: The YvcK protein is essential for Bacillus subtilis growth on gluconeogenic conditions; its overproduction rescues an mreB mutant. Results: PrkC phosphorylates YvcK; this phosphorylation is not required for growth on gluconeogenic conditions but is necessary for mreB rescue. Conclusion: YvcK phosphorylation is specifically involved in B. subtilis morphogenesis. Significance: This phosphorylation-based regulatory mechanism could be widespread in bacteria. The YvcK protein has been shown to be necessary for growth under gluconeogenic conditions in Bacillus subtilis. Amazingly, its overproduction rescues growth and morphology defects of the actin-like protein MreB deletion mutant by restoration of PBP1 localization. In this work, we observed that YvcK was phosphorylated at Thr-304 by the protein kinase PrkC and that phosphorylated YvcK was dephosphorylated by the cognate phosphatase PrpC. We show that neither substitution of this threonine with a constitutively phosphorylated mimicking glutamic acid residue or a phosphorylation-dead mimicking alanine residue nor deletion of prkC or prpC altered the ability of B. subtilis to grow under gluconeogenic conditions. However, we observed that a prpC mutant and a yvcK mutant were more sensitive to bacitracin compared with the WT strain. In addition, the bacitracin sensitivity of strains in which YvcK Thr-304 was replaced with either an alanine or a glutamic acid residue was also affected. We also analyzed rescue of the mreB mutant strain by overproduction of YvcK in which the phosphorylation site was substituted. We show that YvcK T304A overproduction did not rescue the mreB mutant aberrant morphology due to PBP1 mislocalization. The same observation was made in an mreB prkC double mutant overproducing YvcK. Altogether, these data show that YvcK may have two distinct functions: 1) in carbon source utilization independent of its phosphorylation level and 2) in cell wall biosynthesis and morphogenesis through its phosphorylation state.
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页码:23662 / 23669
页数:8
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