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Central Role of Manganese in Regulation of Stress Responses, Physiology, and Metabolism in Streptococcus pneumoniae ▿ †

机译:锰在调节肺炎链球菌的应激反应,生理和代谢中的核心作用

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摘要

The importance of Mn2+ for pneumococcal physiology and virulence has been studied extensively. However, the specific cellular role(s) for which Mn2+ is required are yet to be fully elucidated. Here, we analyzed the effect of Mn2+ limitation on the transcriptome and proteome of Streptococcus pneumoniae D39. This was carried out by comparing a deletion mutant lacking the solute binding protein of the high-affinity Mn2+ transporter, pneumococcal surface antigen A (PsaA), with its isogenic wild-type counterpart. We provide clear evidence for the Mn2+-dependent regulation of the expression of oxidative-stress-response enzymes SpxB and Mn2+-SodA and virulence-associated genes pcpA and prtA. We also demonstrate the upregulation of at least one oxidative- and nitrosative-stress-response gene cluster, comprising adhC, nmlR, and czcD, in response to Mn2+ stress. A significant increase in 6-phosphogluconate dehydrogenase activity in the psaA mutant grown under Mn2+-replete conditions and upregulation of an oligopeptide ABC permease (AppDCBA) were also observed. Together, the results of transcriptomic and proteomic analyses provided evidence for Mn2+ having a central role in activating or stimulating enzymes involved in central carbon and general metabolism. Our results also highlight the importance of high-affinity Mn2+ transport by PsaA in pneumococcal competence, physiology, and metabolism and elucidate mechanisms underlying the response to Mn2+ stress.
机译:Mn 2+对肺炎球菌生理和毒力的重要性已得到广泛研究。然而,尚未充分阐明需要Mn 2+的特定细胞作用。在这里,我们分析了Mn2 +限制对肺炎链球菌D39的转录组和蛋白质组的影响。这是通过比较缺失缺失突变体的缺失突变体来实现的,该缺失突变体缺少高亲和力Mn2 +转运蛋白的溶质结合蛋白,肺炎球菌表面抗原A(PsaA)及其同基因的野生型对应物。我们为氧化应激反应酶SpxB和Mn2 + -SodA以及与毒力相关的基因pcpA和prtA的Mn2 +依赖性调节提供了明确的证据。我们还证明了至少一个氧化应激反应和亚硝化应激反应基因簇的上调,包括adhC,nmlR和czcD,以响应Mn2 +应激。还观察到在富含Mn2 +的条件下生长的psaA突变体中6-磷酸葡萄糖酸脱氢酶活性显着增加,并且寡肽ABC渗透酶(AppDCBA)上调。转录组学和蛋白质组学分析的结果共同为Mn2 +在激活或刺激参与中央碳和一般代谢的酶中发挥重要作用提供了证据。我们的研究结果还强调了PsaA高亲和力Mn2 +转运在肺炎球菌能力,生理学和新陈代谢中的重要性,并阐明了对Mn2 +应激反应的潜在机制。

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