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Structural and functional studies of the Mycobacterium tuberculosis VapBC30 toxin-antitoxin system: implications for the design of novel antimicrobial peptides

机译:结核分枝杆菌VapBC30毒素-抗毒素系统的结构和功能研究:对新型抗菌肽设计的启示

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Toxin-antitoxin (TA) systems play important roles in bacterial physiology, such as multidrug tolerance, biofilm formation, and arrest of cellular growth under stress conditions. To develop novel antimicrobial agents against tuberculosis, we focused on VapBC systems, which encompass more than half of TA systems in Mycobacterium tuberculosis. Here, we report that the Mycobacterium tuberculosis VapC30 toxin regulates cellular growth through both magnesium and manganese ion-dependent ribonuclease activity and is inhibited by the cognate VapB30 antitoxin. We also determined the 2.7-angstrom resolution crystal structure of the M. tuberculosis VapBC30 complex, which revealed a novel process of inactivation of the VapC30 toxin via swapped blocking by the VapB30 antitoxin. Our study on M. tuberculosis VapBC30 leads us to design two kinds of VapB30 and VapC30-based novel peptides which successfully disrupt the toxin-antitoxin complex and thus activate the ribonuclease activity of the VapC30 toxin. Our discovery herein possibly paves the way to treat tuberculosis for next generation.
机译:毒素-抗毒素(TA)系统在细菌生理学中起着重要作用,例如多药耐受性,生物膜形成以及在压力条件下阻止细胞生长。为了开发新型抗结核药物,我们集中研究了VapBC系统,该系统涵盖了结核分枝杆菌中超过一半的TA系统。在这里,我们报告结核分枝杆菌VapC30毒素通过镁和锰离子依赖性核糖核酸酶活性调节细胞生长,并被同源VapB30抗毒素抑制。我们还确定了结核分枝杆菌VapBC30复合物的2.7埃分辨率晶体结构,该结构揭示了VapC30毒素通过交换被VapB30抗毒素阻断而失活的新过程。我们对结核分枝杆菌VapBC30的研究使我们设计了两种基于VapB30和VapC30的新型肽,它们成功破坏了毒素-抗毒素复合物,从而激活了VapC30毒素的核糖核酸酶活性。我们在这里的发现可能为下一代治疗结核病铺平道路。

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