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The ResD Response Regulator through Functional Interaction with NsrR and Fur Plays Three Distinct Roles in Bacillus subtilis Transcriptional Control

机译:ResD反应调节剂通过与NsrR和Fur的功能相互作用在枯草芽孢杆菌的转录控制中发挥三个不同的作用。

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摘要

The ResD response regulator activates transcription of diverse genes in Bacillus subtilis in response to oxygen limitation. ResD regulon genes that are the most highly induced during nitrate respiration include the nitrite reductase operon (nasDEF) and the flavohemoglobin gene (hmp), whose products function in nitric oxide (NO) metabolism. Transcription of these genes is also under the negative control of the NO-sensitive NsrR repressor. Recent studies showed that the NsrR regulon contains genes with no apparent relevance to NO metabolism and that the ResD response regulator and NsrR coordinately regulate transcription. To determine whether these genes are direct targets of NsrR and ResD, we used chromatin affinity precipitation coupled with tiling chip (ChAP-chip) and ChAP followed by quantitative PCR (ChAP-qPCR) analyses. The study showed that ResD and NsrR directly control transcription of the ykuNOP operon in the Fur regulon. ResD functions as an activator at the nasD and hmp promoters, whereas it functions at the ykuN promoter as an antirepressor of Fur and a corepressor for NsrR. This mechanism likely participates in fine-tuning of transcript levels in response to different sources of stress, such as oxygen limitation, iron limitation, and exposure to NO.
机译:ResD反应调节剂响应于氧气限制而激活枯草芽孢杆菌中多种基因的转录。在硝酸盐呼吸过程中诱导程度最高的ResD regulon基因包括亚硝酸还原酶操纵子(nasDEF)和黄素血红蛋白基因(hmp),其产物在一氧化氮(NO)代谢中起作用。这些基因的转录也在NO敏感的NsrR阻遏物的负调控下。最近的研究表明,NsrR调节子包含与NO代谢没有明显相关性的基因,并且ResD反应调节剂和NsrR协同调节转录。为了确定这些基因是否是NsrR和ResD的直接靶标,我们使用了染色质亲和沉淀,平铺芯片(ChAP-chip)和ChAP,然后进行定量PCR(ChAP-qPCR)分析。研究表明ResD和NsrR直接控制Fur调节子中ykuNOP操纵子的转录。 ResD在nasD和hmp启动子上起激活剂的作用,而在ykuN启动子上起Fur的抗阻遏剂和NsrR的核心抑制剂的作用。该机制可能参与了转录水平的微调,以响应不同的压力源,例如氧气限制,铁限制和暴露于NO。

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