Cyclic diadenosine monophosphate (c-di-AMP) is a conserved nucleotide second messenger critical for bacterial growth and resistance to cell wall-active antibiotics. In Listeria monocytogenes, the sole diadenylate cyclase, DacA, is essential in rich, but not synthetic media and ÎdacA mutants are highly sensitive to the β-lactam antibiotic cefuroxime. In this study, loss of function mutations in the oligopeptide importer (oppABCDF) and glycine betaine importer (gbuABC) allowed ÎdacA mutants to grow in rich medium. Since oligopeptides were sufficient to inhibit growth of the ÎdacA mutant we hypothesized that oligopeptides act as osmolytes, similar to glycine betaine, to disrupt intracellular osmotic pressure. Supplementation with salt stabilized the ÎdacA mutant in rich medium and restored cefuroxime resistance. Additional suppressor mutations in the acetyl-CoA binding site of pyruvate carboxylase (PycA) rescued cefuroxime resistance and resulted in a 100-fold increase in virulence of the ÎdacA mutant. PycA is inhibited by c-di-AMP and these mutations prompted us to examine the role of TCA cycle enzymes. Inactivation of citrate synthase, but not down-stream enzymes suppressed ÎdacA phenotypes. These data suggested that c-di-AMP modulates central metabolism at the pyruvate node to moderate citrate production and indeed, the ÎdacA mutant accumulated six times the concentration of citrate present in wild-type bacteria.
c-di-AMP modulates Listeria monocytogenes central metabolism to regulate growth, antibiotic resistance and osmoregulation.
c-di-AMP 调节单核细胞增生李斯特菌的中心代谢,从而调节其生长、抗生素耐药性和渗透压调节
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作者:Whiteley Aaron T, Garelis Nicholas E, Peterson Bret N, Choi Philip H, Tong Liang, Woodward Joshua J, Portnoy Daniel A
| 期刊: | Molecular Microbiology | 影响因子: | 2.600 |
| 时间: | 2017 | 起止号: | 2017 Apr;104(2):212-233 |
| doi: | 10.1111/mmi.13622 | 研究方向: | 代谢 |
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