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Potassium Uptake Modulates Staphylococcus aureus Metabolism

机译:钾的吸收调节金黄色葡萄球菌的代谢

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As a leading cause of community-associated and nosocomial infections, Staphylococcus aureus requires sophisticated mechanisms that function to maintain cellular homeostasis in response to its exposure to changing environmental conditions. The adaptation to stress and maintenance of homeostasis depend largely on membrane activity, including supporting electrochemical gradients and synthesis of ATP. This is largely achieved through potassium (K+) transport, which plays an essential role in maintaining chemiosmotic homeostasis, affects antimicrobial resistance, and contributes to fitness in vivo . Here, we report that S.?aureus Ktr-mediated K+ uptake is necessary for maintaining cytoplasmic pH and the establishment of a proton motive force. Metabolite analyses revealed that K+ deficiency affects both metabolic and energy states of S.?aureus by impairing oxidative phosphorylation and directing carbon flux toward substrate-level phosphorylation. Taken together, these results underline the importance of K+ uptake in maintaining essential components of S.?aureus metabolism. IMPORTANCE Previous studies describing mechanisms for K+ uptake in S.?aureus revealed that the Ktr-mediated K+ transport system was required for normal growth under alkaline conditions but not under neutral or acidic conditions. This work focuses on the effect of K+ uptake on S.?aureus metabolism, including intracellular pH and carbon flux, and is the first to utilize a pH-dependent green fluorescent protein (GFP) to measure S.?aureus cytoplasmic pH. These studies highlight the role of K+ uptake in supporting proton efflux under alkaline conditions and uncover a critical role for K+ uptake in establishing efficient carbon utilization.
机译:作为社区相关和医院感染的主要原因,金黄色葡萄球菌需要复杂的机制来响应暴露于不断变化的环境条件而保持细胞稳态。对压力的适应和动态平衡的维持在很大程度上取决于膜的活性,包括支持电化学梯度和ATP的合成。这主要是通过钾(K + )转运来实现的,钾转运在维持化学渗透稳态中起着至关重要的作用,影响抗菌素耐药性,并有助于体内的适应性。在这里,我们报道金黄色葡萄球菌Ktr介导的K + 摄取对于维持细胞质pH和建立质子动力是必要的。代谢物分析表明,K + 缺乏症通过损害氧化磷酸化并将碳通量导向底物水平的磷酸化而影响金黄色葡萄球菌的代谢和能量状态。综上所述,这些结果强调了摄取K + 在维持金黄色葡萄球菌代谢必需成分方面的重要性。重要事项先前描述金黄色葡萄球菌摄取K + 的机制的研究表明,在碱性条件下正常生长需要Ktr介导的K + 转运系统,而在中性条件下则不需要或酸性条件。这项工作集中于摄取K + 对金黄色葡萄球菌代谢的影响,包括细胞内pH和碳通量,并且是首次利用pH依赖性绿色荧光蛋白(GFP)来测量S金黄色葡萄球菌的胞质pH。这些研究突显了在碱性条件下K + 的吸收在支持质子流出中的作用,并揭示了K + 的吸收在建立有效碳利用中的关键作用。

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