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A combination of docking and cheminformatics approaches for the identification of inhibitors against 4 ' phosphopantetheinyl transferase of Mycobacterium tuberculosis

机译:对接和化学信息学的组合方法,用于鉴定抑制剂免受结核分枝杆菌的4'磷酸乙基乙基转移酶的鉴定

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摘要

4' Phosphopantetheinyl transferase (PptT) is involved in post translational modification by carrying out phosphopantetheinylation of proteins in non-ribosomal peptide synthesis and polyketide synthesis pathways of various organisms. PptT was recently shown to be crucial for the survival as well as persistence of Mycobacterium tuberculosis (M. tb) in mice models thus demonstrating it to be an attractive drug target. By employing Autodock 4.2 and Glide, we virtually screened the filtered NCI library against the active site of PptT and out of the 205 molecules tested in vitro, 13 molecules exhibited potent enzyme inhibition with IC50 = 10 mu g ml(-1). Further evaluation of the molecules against the in vitro growth of M. tb resulted in the identification of six compounds that exhibited inhibition of both enzyme activity as well as M. tb growth. Subsequently, a cheminformatics based structure similarity approach led to the identification of 5 analogues of P-52 (IC50 -2.25 mu g ml(-1) and MIC90 -77.5 mu g ml(-1)) with IC50 = 1 mu g ml(-1) thereby establishing N, N-diethyl-N'-(2-methylquinolin-8-yl) propane-1,3-diamine as one of the potent inhibitory scaffolds of PptT. The inhibitors were further evaluated for their MIC90 values as well as cytotoxicity against various mammalian cell lines. PS-4' (NSC-328398), an analogue of P-52, emerged as a potent inhibitory molecule which exhibited an IC50 of 0.25 mu g ml(-1), MIC90 of 10 mu g ml(-1) and negligible cytotoxicity with a selectivity index 10 against three mammalian cell lines tested. Thus, our study identified potent inhibitory scaffolds against 40 phosphopantetheinyl transferase of M. tb, an important drug target of M. tb.
机译:通过在非核糖体肽合成和各种生物的聚酮化合成途径中进行蛋白质的磷化乙酰基化,磷酸乙烯基乙基转移酶(PPTT)参与翻译后修饰。最近PPTT最近对存活至关重要,以及小鼠模型中结核分枝杆菌(M.TB)的持续存在,因此表明它是一种有吸引力的药物目标。通过使用Autodock 4.2和滑动,我们几乎筛选过滤的NCI库对PPTT的活性位点,并在体外测试的205分子中,13个分子表现出用IC 50且10μgmm(-1)的有效酶抑制。进一步评价分子对M的体外生长导致鉴定鉴定酶活性的六种化合物以及M. TB生长。随后,基于化学信息结构相似的方式导致了5个类似物的P-52(IC 50 -2.25亩克毫升(-1)和MIC90 -77.5亩克毫升(-1)),与IC50小于的标识; = 1亩克由此将N,N-二乙基-N' - (2-甲基喹啉-8-基)丙烷-1,3-二胺建立N,N-二乙基-N' - (2-甲基喹啉-8-基)作为PPTT的有效抑制支架之一。进一步评估其MIC90值以及针对各种哺乳动物细胞系的细胞毒性的抑制剂。 PS-4'(NSC-328398)是P-52的类似物,其作为具有0.25μg(-1)的IC50,MIC90,10μgmm(-1)和可忽略的细胞毒性的效率抑制分子选择性指数& 10针对三种哺乳动物细胞系测试。因此,我们的研究鉴定了对M.TB的40个磷酸乙酰基转移酶的有效的抑制支架,是M.TB的重要药物靶标。

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  • 来源
    《RSC Advances》 |2018年第1期|共14页
  • 作者单位

    Univ Delhi Dept Biochem South Campus Benito Juarez Rd New Delhi 110021 India;

    Univ Delhi Dept Biochem South Campus Benito Juarez Rd New Delhi 110021 India;

    Univ Delhi Dept Biochem South Campus Benito Juarez Rd New Delhi 110021 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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