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首页> 外文期刊>Journal of bacteriology >Expanding the Regulatory Network Governed by the Extracytoplasmic Function Sigma Factor σH in Corynebacterium glutamicum
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Expanding the Regulatory Network Governed by the Extracytoplasmic Function Sigma Factor σH in Corynebacterium glutamicum

机译:扩大谷氨酸棒状杆菌中胞外功能Sigma因子σH调控的调控网络

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The extracytoplasmic function sigma factor σH is responsible for the heat and oxidative stress response in Corynebacterium glutamicum. Due to the hierarchical nature of the regulatory network, previous transcriptome analyses have not been able to discriminate between direct and indirect targets of σH. Here, we determined the direct genome-wide targets of σH using chromatin immunoprecipitation with microarray technology (ChIP-chip) for analysis of a deletion mutant of rshA, encoding an anti-σ factor of σH. Seventy-five σH-dependent promoters, including 39 new ones, were identified. σH-dependent, heat-inducible transcripts for several of the new targets, including ilvD encoding a labile Fe-S cluster enzyme, dihydroxy-acid dehydratase, were detected, and their 5′ ends were mapped to the σH-dependent promoters identified. Interestingly, functional internal σH-dependent promoters were found in operon-like gene clusters involved in the pentose phosphate pathway, riboflavin biosynthesis, and Zn uptake. Accordingly, deletion of rshA resulted in hyperproduction of riboflavin and affected expression of Zn-responsive genes, possibly through intracellular Zn overload, indicating new physiological roles of σH. Furthermore, sigA encoding the primary σ factor was identified as a new target of σH. Reporter assays demonstrated that the σH-dependent promoter upstream of sigA was highly heat inducible but much weaker than the known σA-dependent one. Our ChIP-chip analysis also detected the σH-dependent promoters upstream of rshA within the sigH-rshA operon and of sigB encoding a group 2 σ factor, supporting the previous findings of their σH-dependent expression. Taken together, these results reveal an additional layer of the sigma factor regulatory network in C. glutamicum.
机译:胞外功能sigma因子σ H 负责谷氨酸棒杆菌的热和氧化应激反应。由于监管网络的分层性质,以前的转录组分析无法区分σ H 的直接和间接目标。在这里,我们使用染色质免疫沉淀和微阵列技术(ChIP芯片)分析了 rshA 的缺失突变体,确定了 H 的全基因组直接靶标,该突变体编码抗σ H 的-σ因子。确定了75个σ H 依赖性启动子,包括39个新启动子。检测了几个新靶标的σ H 依赖性热诱导转录本,包括编码不稳定的Fe-S簇酶,二羟基酸脱水酶的 ilvD 。它们的5'末端被映射到所鉴定的σ H 依赖性启动子。有趣的是,在参与戊糖磷酸途径,核黄素生物合成和锌吸收的操纵子样基因簇中发现了功能性内部σ H 依赖性启动子。因此, rshA 的缺失可能导致核黄素的过量生产,并可能通过细胞内锌超载影响锌响应基因的表达,这表明σ H 具有新的生理作用。此外,编码主要σ因子的 sigA 被确定为σ H 的新目标。记者分析表明, sigA 上游的依赖σ H 的启动子具有很高的热诱导能力,但比已知的依赖σ A 的启动子弱得多。我们的ChIP芯片分析还检测到 sigH-rshA 操纵子内 rshA 上游和 sigB < / em>编码2组σ因子,以支持先前依赖于σ H 表达式的发现。综上所述,这些结果揭示了谷氨酸棒杆菌中σ因子调控网络的另一层。

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