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Structure-based in-silico rational design of a selective peptide inhibitor for thymidine monophosphate kinase of mycobacterium tuberculosis

机译:结核分枝杆菌胸苷单磷酸激酶选择性肽抑制剂的基于结构的计算机模拟设计

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摘要

Tuberculosis still remains one of the most deadly infectious diseases. The emergence of drug resistant strains has fuelled the quest for novel drugs and drug targets for its successful treatment. Thymidine monophosphate kinase (TMPK) lies at the point where the salvage and de novo synthetic pathways meet in nucleotide synthesis. TMPK in M.tb has emerged as an attractive drug target since blocking it will affect both the pathways involved in the thymidine triphosphate synthesis. Moreover, the unique differences at the active site of TMPK enzyme in M.tb and humans can be exploited for the development of ideal drug candidates. Based on a detailed evaluation of known inhibitors and available three-dimensional structures of TMPK, several peptidic inhibitors were designed. In silico docking and selectivity analysis of these inhibitors with TMPK from M.tb and human was carried out to examine their differential binding at the active site. The designed tripeptide, Trp-Pro-Asp, was found to be most selective for M.tb. The ADMET analysis of this peptide indicated that it is likely to be a drug candidate. The tripeptide so designed is a suitable lead molecule for the development of novel TMPK inhibitors as anti-tubercular drugs.
机译:结核病仍然是最致命的传染病之一。耐药菌株的出现推动了对新型药物和成功治疗的药物靶标的需求。胸苷单磷酸激酶(TMPK)位于残基和从头合成途径在核苷酸合成中相遇的位置。 M.tb中的TMPK已成为一种有吸引力的药物靶标,因为阻断它会影响参与三磷酸胸苷合成的两种途径。而且,可以利用M.tb和人中TMPK酶活性位点的独特差异来开发理想的候选药物。基于对已知抑制剂的详细评估和TMPK的可用三维结构,设计了几种肽类抑制剂。在计算机对接中,用M.tb和人的TMPK对这些抑制剂进行了选择性分析,以检查它们在活性位点的差异结合。发现设计的三肽Trp-Pro-Asp对M.tb具有最高的选择性。该肽的ADMET分析表明它可能是候选药物。如此设计的三肽是用于开发新型TMPK抑制剂作为抗结核药的合适先导分子。

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