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Post-Translational Regulation via Clp Protease Is Critical for Survival of Mycobacterium tuberculosis

机译:通过Clp蛋白酶的翻译后调控对于结核分枝杆菌的生存至关重要

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摘要

Unlike most bacterial species, Mycobacterium tuberculosis depends on the Clp proteolysis system for survival even in in vitro conditions. We hypothesized that Clp is required for the physiologic turnover of mycobacterial proteins whose accumulation is deleterious to bacterial growth and survival. To identify cellular substrates, we employed quantitative proteomics and transcriptomics to identify the set of proteins that accumulated upon the loss of functional Clp protease. Among the set of potential Clp substrates uncovered, we were able to unambiguously identify WhiB1, an essential transcriptional repressor capable of auto-repression, as a substrate of the mycobacterial Clp protease. Dysregulation of WhiB1 turnover had a toxic effect that was not rescued by repression of whiB1 transcription. Thus, under normal growth conditions, Clp protease is the predominant regulatory check on the levels of potentially toxic cellular proteins. Our findings add to the growing evidence of how post-translational regulation plays a critical role in the regulation of bacterial physiology.
机译:与大多数细菌不同,结核分枝杆菌即使在体外条件下也要依靠Clp蛋白水解系统才能生存。我们假设Clp是分枝杆菌蛋白的生理更新所必需的,其积累对细菌的生长和存活是有害的。为了鉴定细胞底物,我们采用了定量蛋白质组学和转录组学来鉴定在功能性Clp蛋白酶丧失后积累的蛋白质组。在发现的一组潜在Clp底物中,我们能够明确鉴定WhiB1(一种能够自动阻遏的必需转录阻遏物)作为分枝杆菌Clp蛋白酶的底物。 WhiB1周转失调具有毒性作用,而whiB1转录的抑制不能挽救这种作用。因此,在正常生长条件下,Clp蛋白酶是对潜在毒性细胞蛋白水平的主要调节检查。我们的发现为翻译后调控如何在细菌生理学调控中发挥关键作用提供了越来越多的证据。

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