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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Investigating the structural basis of arylamides to improve potency against M. tuberculosis strain through molecular dynamics simulations.
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Investigating the structural basis of arylamides to improve potency against M. tuberculosis strain through molecular dynamics simulations.

机译:通过分子动力学模拟研究芳基酰胺的结构基础,以提高针对结核分枝杆菌菌株的效力。

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摘要

Arylamides have been identified as direct InhA inhibitors which overcome the drug-resistance problem of isoniazid, the first-line drug for tuberculosis treatment. However, arylamide properties are not yet optimal against Mycobacterium tuberculosis. Arylamides show high potency in InhA enzyme assay, but they fail in antimycobacterial assay. To achieve the structural basis to improve antimycobacterial activity, the dynamic behavior of arylamide inhibitors and a substrate, trans-2-hexadecenoyl-(N-acetylcysteamine)-thioester, were carried out by molecular dynamics (MD) simulations. Arylamide inhibitors and a substrate are positioned at the same site which indicates the competitive inhibitor function of arylamides. Based on our findings, the amide carbonyl oxygen causes the selectivity of arylamide inhibitors for InhA inhibition. Moreover, this moiety is crucial for the affinity of the arylamide-InhA interactions with Tyr158 and NADH to form hydrogen bonds. It is possible to enhance the selectivity of arylamide inhibitors to reach the InhA target by introducing a hydrophilic substituent into the aryl ring A. In order to increase the membrane permeability of arylamide inhibitors, more lipophilic properties should be incorporated into the substituent B. Therefore, based on the obtained results, the correct balance between the selectivity and the membrane permeability of arylamide inhibitors should improve their inhibitory activity against M. tuberculosis strain.
机译:芳酰胺已被确认为直接的InhA抑制剂,它可以克服异烟肼的耐药性问题,异烟肼是治疗结核病的一线药物。但是,芳基酰胺的特性对于结核分枝杆菌尚不是最佳的。芳基酰胺在InhA酶检测中显示出高效力,但在抗分枝杆菌检测中不起作用。为了获得改善抗分枝杆菌活性的结构基础,通过分子动力学(MD)模拟进行了芳基酰胺抑制剂和底物反式-2-十六碳酰-(N-乙酰基半胱胺)-硫酯的动力学行为。芳酰胺抑制剂和底物位于同一位置,表明芳酰胺具有竞争性抑制剂功能。根据我们的发现,酰胺羰基氧导致芳基酰胺抑制剂对InhA抑制的选择性。此外,该部分对于芳基酰胺-InhA与Tyr158和NADH形成氢键的亲和力至关重要。通过将亲水性取代基引入芳基环A,可以提高芳基酰胺抑制剂达到InhA目标的选择性。为了提高芳基酰胺抑制剂的膜渗透性,应在取代基B中引入更多的亲脂性。根据获得的结果,芳基酰胺抑制剂的选择性和膜渗透性之间的正确平衡应提高其对结核分枝杆菌菌株的抑制活性。

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