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Proteomic and transcriptomic experiments reveal an essential role of RNA degradosome complexes in shaping the transcriptome of Mycobacterium tuberculosis

机译:蛋白质组学和转录组学实验揭示了RNA降解体复合物在塑造结核分枝杆菌转录组中的重要作用

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摘要

The phenotypic adjustments of Mycobacterium tuberculosis are commonly inferred from the analysis of transcript abundance. While mechanisms of transcriptional regulation have been extensively analysed in mycobacteria, little is known about mechanisms that shape the transcriptome by regulating RNA decay rates. The aim of the present study is to identify the core components of the RNA degradosome of M. tuberculosis and to analyse their function in RNA metabolism. Using an approach involving cross-linking to 4-thiouridine-labelled RNA, we mapped the mycobacterial RNA-bound proteome and identified degradosome-related enzymes polynucleotide phosphorylase (PNPase), ATP-dependent RNA helicase (RhlE), ribonuclease E (RNase E) and ribonuclease J (RNase J) as major components. We then carried out affinity purification of eGFP-tagged recombinant constructs to identify protein-protein interactions. This identified further interactions with cold-shock proteins and novel KH-domain proteins. Engineering and transcriptional profiling of strains with a reduced level of expression of core degradosome ribonucleases provided evidence of important pleiotropic roles of the enzymes in mycobacterial RNA metabolism highlighting their potential vulnerability as drug targets.
机译:结核分枝杆菌的表型调节通常是从转录本丰度的分析中推断出来的。虽然在分枝杆菌中已经广泛地分析了转录调节的机制,但对于通过调节RNA衰减速率来塑造转录组的机制知之甚少。本研究的目的是鉴定结核分枝杆菌RNA降解体的核心成分,并分析其在RNA代谢中的功能。我们使用涉及与4-硫尿苷标记的RNA交联的方法,绘制了与分枝杆菌RNA结合的蛋白质组图谱,并鉴定了降解体相关的酶多核苷酸磷酸化酶(PNPase),ATP依赖性RNA解旋酶(RhlE),核糖核酸酶E(RNase E)和核糖核酸酶J(RNase J)作为主要成分。然后,我们进行了带有eGFP标签的重组构建体的亲和纯化,以鉴定蛋白质之间的相互作用。这确定了与冷休克蛋白和新型KH结构域蛋白的进一步相互作用。核心降解核糖核酸的表达水平降低的菌株的工程改造和转录谱分析提供了该酶在分枝杆菌RNA代谢中的重要多效性作用的证据,突显了其作为药物靶标的潜在脆弱性。

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