作者
Christopher Campbell, Claire Fingleton, Merve S Zeden, Emilio Bueno, Laura A Gallagher, Dhananjay Shinde, Jongsam Ahn, Heather M Olson, Thomas L Fillmore, Joshua N Adkins, Fareha Razvi, Kenneth W Bayles, Paul D Fey, Vinai C Thomas, Felipe Cava, Geremy C Clair, James P O’gara
发表日期
2021/7/7
期刊
MBio
卷号
12
期号
3
页码范围
10.1128/mbio. 00530-21
出版商
American Society for Microbiology
简介
Penicillin binding protein 2a (PBP2a)-dependent resistance to β-lactam antibiotics in methicillin-resistant Staphylococcus aureus (MRSA) is regulated by the activity of the tricarboxylic acid (TCA) cycle via a poorly understood mechanism. We report that mutations in sucC and sucD, but not other TCA cycle enzymes, negatively impact β-lactam resistance without changing PBP2a expression. Increased intracellular levels of succinyl coenzyme A (succinyl-CoA) in the sucC mutant significantly perturbed lysine succinylation in the MRSA proteome. Suppressor mutations in sucA or sucB, responsible for succinyl-CoA biosynthesis, reversed sucC mutant phenotypes. The major autolysin (Atl) was the most succinylated protein in the proteome, and increased Atl succinylation in the sucC mutant was associated with loss of autolytic activity. Although PBP2a and PBP2 were also among the most succinylated proteins in the …
引用总数
20212022202320241745