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Resilience in the Face of Uncertainty: Sigma Factor B Fine-Tunes Gene Expression To Support Homeostasis in Gram-Positive Bacteria

机译:面对不确定性的复原力:Sigma因子B微调基因表达可支持革兰氏阳性细菌的体内平衡

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Gram-positive bacteria are ubiquitous and diverse microorganisms that can survive and sometimes even thrive in continuously changing environments. The key to such resilience is the ability of members of a population to respond and adjust to dynamic conditions in the environment. In bacteria, such responses and adjustments are mediated, at least in part, through appropriate changes in the bacterial transcriptome in response to the conditions encountered. Resilience is important for bacterial survival in diverse, complex, and rapidly changing environments and requires coordinated networks that integrate individual, mechanistic responses to environmental cues to enable overall metabolic homeostasis. In many Gram-positive bacteria, a key transcriptional regulator of the response to changing environmental conditions is the alternative sigma factor σ~(B). σ~(B) has been characterized in a subset of Gram-positive bacteria, including the genera Bacillus , Listeria , and Staphylococcus . Recent insight from next-generation-sequencing results indicates that σ~(B)-dependent regulation of gene expression contributes to resilience, i.e., the coordination of complex networks responsive to environmental changes. This review explores contributions of σ~(B) to resilience in Bacillus , Listeria , and Staphylococcus and illustrates recently described regulatory functions of σ~(B).
机译:革兰氏阳性细菌是普遍存在的多种微生物,它们可以在不断变化的环境中生存甚至有时繁衍。这种抵御能力的关键是人口成员对环境中的动态条件做出响应和适应的能力。在细菌中,至少部分地通过响应于所遇到的条件的细菌转录组的适当改变来介导这种反应和调节。恢复力对于细菌在各种复杂,快速变化的环境中的生存至关重要,并且需要协调一致的网络来整合对环境线索的个体机械反应,以实现整体代谢稳态。在许多革兰氏阳性细菌中,对变化的环境条件作出反应的关键转录调节因子是替代的sigma因子σ〜(B)。 σ〜(B)的特征在于革兰氏阳性细菌的一个子集,包括芽孢杆菌属,李斯特菌属和葡萄球菌属。下一代测序结果的最新见解表明,依赖σ〜(B)的基因表达调控有助于恢复力,即响应环境变化的复杂网络的协调。这篇综述探讨了σ〜(B)对芽孢杆菌,李斯特菌和葡萄球菌的复原力的贡献,并阐明了最近描述的σ〜(B)的调节功能。

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