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VapBC22 toxin-antitoxin system from Mycobacterium tuberculosis is required for pathogenesis and modulation of host immune response

机译:来自结核分枝杆菌的VAPBC22毒素抗毒素系统是发病机制和宿主免疫应答的调节所必需的

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Virulence-associated protein B and C toxin-antitoxin (TA) systems are widespread in prokaryotes, but their precise role in physiology is poorly understood. We have functionally characterized the VapBC22 TA system from Mycobacterium tuberculosis . Transcriptome analysis revealed that overexpression of VapC22 toxin in M. tuberculosis results in reduced levels of metabolic enzymes and increased levels of ribosomal proteins. Proteomics studies showed reduced expression of virulence-associated proteins and increased levels of cognate antitoxin, VapB22 in the Δ vapC22 mutant strain. Furthermore, both the Δ vapC22 mutant and VapB22 overexpression strains of M. tuberculosis were susceptible to killing upon exposure to oxidative stress and showed attenuated growth in guinea pigs and mice. Host transcriptome analysis suggests upregulation of the transcripts involved in innate immune responses and tissue remodeling in mice infected with the Δ vapC22 mutant strain. Together, we demonstrate that the VapBC22 TA system belongs to a key regulatory network and is essential for M. tuberculosis pathogenesis.
机译:毒力相关的蛋白B和C毒素 - 抗毒素(TA)系统在原核生物中是普遍的,但它们在生理学中的确切作用是较差的理解。我们在功能性地表征了来自结核分枝杆菌的VAPBC22 TA系统。转录组分析表明,在M.结核病中VAPC22毒素的过度表达导致核糖酶水平降低和核糖体蛋白水平增加。蛋白质组学研究表明,在δVAPC22突变菌株中减少了毒力相关蛋白的表达和增加的同源抗毒素水平,VAPB22。此外,δVAPC22突变体和M.Tuberculosis的vAPB22过表达菌株易于在暴露于氧化胁迫时杀死,并且在豚鼠和小鼠中显示出减毒生长。宿主转录组分析表明,涉及与δVAPC22突变菌株感染的小鼠的先天免疫应答和组织重塑的转录物上调。我们一起证明VAPBC22 TA系统属于关键调节网络,对于结核病发病机制至关重要。

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