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首页> 外文期刊>Biochemical and Biophysical Research Communications >Resisting resistant Mycobacterium tuberculosis naturally: Mechanistic insights into the inhibition of the parasite's sole signal peptidase Leader peptidase B
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Resisting resistant Mycobacterium tuberculosis naturally: Mechanistic insights into the inhibition of the parasite's sole signal peptidase Leader peptidase B

机译:自然抵抗耐药结核分枝杆菌:抑制寄生虫唯一信号肽酶前导肽酶B的机理见解

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Tuberculosis (TB) is the second highest cause of mortality after HIV/AIDS and is one of the leading public health problems worldwide. The growing resistance to anti-TB drugs and the recalcitrant nature of tenacious infections present arduous challenges for the treatment of TB. Thus, the need to develop therapeutics against novel drug targets to help overcome multi-drug resistant TB is inevitable. Leader peptidase B (LepB), the sole signal peptidase of Mycobacterium tuberculosis (MTb), is one such potential drug target. The present work aims at identifying potential inhibitors of LepB, so as to repress the formation of the functional proteins essential for the growth and pathogenesis of MTb. In this study, we screened a large dataset of natural compounds against LepB using a high throughput approach. The screening was directed toward a binding pocket consisting of residues, some of which are critical for the catalytic activity of the enzyme, while others are part of the conserved domains of the signal peptidases. We also carried out molecular dynamics simulations of the two top-scoring compounds in order to study their molecular interactions with the active site functional residues of LepB and also to assess their dynamic behavior. We report herein two prospective non-covalent type inhibitory drugs of natural origin which are active against tuberculosis. These lead molecules possess improved binding properties, have low toxicity and are specific against MTb.
机译:结核病是仅次于艾滋病毒/艾滋病的第二大致死原因,也是全球主要的公共卫生问题之一。抗结核药物的耐药性和顽强感染的顽固性为结核病的治疗提出了艰巨的挑战。因此,不可避免地需要开发针对新型药物靶标的疗法以帮助克服耐多药结核病。前导肽酶B(LepB)是结核分枝杆菌(MTb)的唯一信号肽酶,是这样一种潜在的药物靶标。目前的工作旨在鉴定潜在的LepB抑制剂,从而抑制MTb的生长和发病机理所必需的功能蛋白的形成。在这项研究中,我们使用高通量方法筛选了针对LepB的大型天然化合物数据集。筛选针对由残基组成的结合袋,其中一些残基对于酶的催化活性至关重要,而其他残基则是信号肽酶保守结构域的一部分。我们还对两种得分最高的化合物进行了分子动力学模拟,以研究其与LepB活性位点残基的分子相互作用,并评估其动力学行为。我们在此报告了两种天然抗结核的非共价型抑制药物。这些铅分子具有改善的结合性能,低毒性并且对MTb具有特异性。

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