Deciphering the role of VapBC13 and VapBC26 toxin antitoxin systems in the pathophysiology of Mycobacterium tuberculosis

IF 5.2 1区 生物学 Q1 BIOLOGY Communications Biology Pub Date : 2024-10-30 DOI:10.1038/s42003-024-06998-6
Arun Sharma, Neelam Singh, Munmun Bhasin, Prabhakar Tiwari, Pankaj Chopra, Raghavan Varadarajan, Ramandeep Singh
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Abstract

The expansion of VapBC TA systems in M. tuberculosis has been linked with its fitness and survival upon exposure to stress conditions. Here, we have functionally characterized VapBC13 and VapBC26 TA modules of M. tuberculosis. We report that overexpression of VapC13 and VapC26 toxins in M. tuberculosis results in growth inhibition and transcriptional reprogramming. We have also identified various regulatory proteins as hub nodes in the top response network of VapC13 and VapC26 overexpression strains. Further, analysis of RNA protection ratios revealed potential tRNA targets for VapC13 and VapC26. Using in vitro ribonuclease assays, we demonstrate that VapC13 and VapC26 degrade serT and leuW tRNA, respectively. However, no significant changes in rRNA cleavage profiles were observed upon overexpression of VapC13 and VapC26 in M. tuberculosis. In order to delineate the role of these TA systems in M. tuberculosis physiology, various mutant strains were constructed. We show that in comparison to the parental strain, ΔvapBC13 and ΔvapBC26 strains were mildly susceptible to oxidative stress. Surprisingly, the growth patterns of parental and mutant strains were comparable in aerosol-infected guinea pigs. These observations imply that significant functional redundancy exists for some TA systems from M. tuberculosis. The ectopic expression of VapC13 and VapC26 results in transcriptional reprogramming of M. tuberculosis. Both, VapBC13 and VapBC26 TA systems are dispensable for infection in guinea pigs, suggesting a degree of functional redundancy in M. tuberculosis.

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解密 VapBC13 和 VapBC26 毒素抗毒素系统在结核分枝杆菌病理生理学中的作用。
结核杆菌中 VapBC TA 系统的扩展与其暴露于压力条件下的适应性和存活率有关。在这里,我们对结核杆菌的 VapBC13 和 VapBC26 TA 模块进行了功能鉴定。我们报告说,在结核杆菌中过表达 VapC13 和 VapC26 毒素会导致生长抑制和转录重编程。我们还在 VapC13 和 VapC26 过表达菌株的顶部反应网络中发现了各种调控蛋白作为枢纽节点。此外,对 RNA 保护率的分析揭示了 VapC13 和 VapC26 的潜在 tRNA 靶标。通过体外核糖核酸酶测定,我们证明 VapC13 和 VapC26 可分别降解 serT 和 leuW tRNA。然而,在结核杆菌中过表达 VapC13 和 VapC26 后,并没有观察到 rRNA 裂解曲线的明显变化。为了明确这些 TA 系统在结核杆菌生理过程中的作用,我们构建了各种突变株。我们发现,与亲本菌株相比,ΔvapBC13 和 ΔvapBC26 菌株对氧化应激有轻微的敏感性。令人惊讶的是,亲本菌株和突变菌株在气溶胶感染豚鼠体内的生长模式相当。这些观察结果表明,结核杆菌的某些 TA 系统存在明显的功能冗余。
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来源期刊
Communications Biology
Communications Biology Medicine-Medicine (miscellaneous)
CiteScore
8.60
自引率
1.70%
发文量
1233
审稿时长
13 weeks
期刊介绍: Communications Biology is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the biological sciences. Research papers published by the journal represent significant advances bringing new biological insight to a specialized area of research.
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