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首页> 外文期刊>Molecular Microbiology >Small RNA Mcr11 requires the transcription factor AbmR for stable expression and regulates genes involved in the central metabolism of Mycobacterium tuberculosis Mycobacterium tuberculosis
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Small RNA Mcr11 requires the transcription factor AbmR for stable expression and regulates genes involved in the central metabolism of Mycobacterium tuberculosis Mycobacterium tuberculosis

机译:小RNA MCR11需要转录因子ABMR用于稳定表达和调节参与分枝杆菌结核分枝杆菌的中央代谢的基因

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Abstract Mycobacterium tuberculosis (Mtb), the etiologic agent of tuberculosis, must adapt to host‐associated environments during infection by modulating gene expression. Small regulatory RNAs (sRNAs) are key regulators of bacterial gene expression, but their roles in Mtb are not well understood. Here, we address the expression and function of the Mtb sRNA Mcr11, which is associated with slow bacterial growth and chronic infections in mice. We found that stable expression of Mcr11 requires multiple factors specific to TB‐complex bacteria, including the AbmR transcription factor. Bioinformatic analyses used to predict regulatory targets of Mcr11 identified 7–11 nucleotide regions with potential for direct base‐pairing with Mcr11 immediately upstream of Rv3282, fadA3 , and lipB . mcr11 ‐dependent regulation of these genes was demonstrated using qRT‐PCR and found to be responsive to the presence of fatty acids. Mutation of the putative Mcr11 base‐pairing site upstream of lipB in a promoter reporter strain resulted in significant de‐repression of lipB expression, similar to that observed in mcr11 ‐deleted Mtb. These studies establish Mcr11’s roles in regulating growth and central metabolism in Mtb. Our finding that multiple TB‐complex‐specific factors are required for production of stable Mcr11 also emphasizes the need to better understand mechanisms of sRNA expression and stability in TB.
机译:摘要结核分枝杆菌(MTB),结核病的病因型剂,通过调节基因表达,在感染期间必须适应宿主相关环境。小型监管RNA(SRNA)是细菌基因表达的关键调节因子,但它们在MTB中的作用也不太了解。在这里,我们解决了MTB SRNA MCR11的表达和功能,其与小鼠的细菌生长和慢性感染有关。我们发现MCR11的稳定表达需要特异于TB - 复杂细菌的多个因素,包括ABMR转录因子。用于预测MCR11调节靶标的生物信息分析鉴定了7-11个核苷酸区域,其具有直接碱基与RV3282,FADA3和LIPB的上游的直接碱基配对。使用QRT-PCR证明了这些基因的MCR11依赖性调节,发现响应于脂肪酸的存在。推杆MCR11碱基配对位点的突变在启动子报告株中的上游导致LIPB表达的显着降低,类似于在MCR11-致命的MTB中观察到的。这些研究建立了MCR11在MTB中调节生长和中央代谢的作用。我们发现生产稳定MCR11的多种TB复杂特定因素也强调需要更好地理解TB中SRNA表达和稳定性的机制。

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