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Transcription factors Rv0081 and Rv3334 connect the early and the enduring hypoxic response of Mycobacterium tuberculosis

机译:转录因子Rv0081和Rv3334连接结核分枝杆菌的早期和持久性低氧反应

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The ability of Mycobacterium tuberculosis (M. tb) to survive and persist in the host for decades in an asymptomatic state is an important aspect of tuberculosis pathogenesis. Although adaptation to hypoxia is thought to play a prominent role underlying M. tb persistence, how the bacteria achieve this goal is largely unknown. Rv0081, a member of the DosR regulon, is induced at the early stage of hypoxia while Rv3334 is one of the enduring hypoxic response genes. In this study, we uncovered genetic interactions between these two transcription factors. RNA-seq analysis of ΔRv0081 and ΔRv3334 revealed that the gene expression profiles of these two mutants were highly similar. We also found that under hypoxia, Rv0081 positively regulated the expression of Rv3334 while Rv3334 repressed transcription of Rv0081. In addition, we demonstrated that Rv0081 formed dimer and bound to the promoter region of Rv3334. Taken together, these data suggest that Rv0081 and Rv3334 work in the same regulatory pathway and that Rv3334 functions immediately downstream of Rv0081. We also found that Rv3334 is a bona fide regulator of the enduring hypoxic response genes. Our study has uncovered a regulatory pathway that connects the early and the enduring hypoxic response, revealing a transcriptional cascade that coordinates the temporal response of M. tb to hypoxia.
机译:结核分枝杆菌(M. tb)在无症状状态下存活并在宿主中存活数十年的能力是结核病发病机理的重要方面。尽管人们认为适应低氧在结核分枝杆菌持久性中起着重要的作用,但是细菌如何达到这个目的在很大程度上尚不清楚。 Rv0081是DosR regulon的成员,在缺氧的早期阶段被诱导,而Rv3334是持久的缺氧反应基因之一。在这项研究中,我们发现了这两个转录因子之间的遗传相互作用。 ΔRv0081和ΔRv3334的RNA-seq分析显示,这两个突变体的基因表达谱高度相似。我们还发现,在缺氧条件下,Rv0081积极调节Rv3334的表达,而Rv3334抑制Rv0081的转录。此外,我们证明Rv0081形成二聚体并结合到Rv3334的启动子区域。综上所述,这些数据表明Rv0081和Rv3334在相同的调节途径中起作用,并且Rv3334在Rv0081的下游直接起作用。我们还发现Rv3334是持久性缺氧反应基因的真正调节剂。我们的研究发现了一条连接早期和持久缺氧反应的调节途径,揭示了一种转录级联反应,可协调tb.Mb对缺氧的时间反应。

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