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Molecular dynamics simulations of the free and inhibitor-bound cruzain systems in aqueous solvent: insights on the inhibition mechanism in acidic pH

机译:水性溶剂中游离和抑制剂结合的Cruzain系统的分子动力学模拟:在酸性pH值下的抑制机理的见解

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The major cysteine protease of Trypanosoma cruzi, cruzain (CRZ), has been described as a therapeutic target for Chagas' disease, which affects millions of people worldwide. Thus, a series of CRZ inhibitors has been studied, including a new competitive inhibitor, Nequimed176 (NEQ176). Nevertheless, the structural and dynamic basis for CRZ inhibition remains unclear. Hoping to contribute to this ever-growing understanding of timescale dynamics in the CRZ inhibition mechanism, we have performed the first study using 100ns of molecular dynamics (MD) simulations of two CRZ systems in an aqueous solvent under pH 5.5: CRZ in the apo form (ligand free) and CRZ complexed to NEQ176. According to the MD simulations, the enzyme adopts an open conformation in the apo form and a closed conformation in the NEQ176-CRZ complex. We also suggest that this closed conformation is related to the hydrogen-bonding interactions between NEQ176 and CRZ, which occurs through key residues, mainly Gly66, Met68, Asn69, and Leu160. In addition, the cross-correlation analysis shows evidence of the correlated motions among Ala110-Asp140, Leu160-Gly189, and Glu190-Gly215 subdomains, as well as, the movements related to Ala1-Thr59 and Asp60-Pro90 regions seem to be crucial for CRZ activity.
机译:克鲁氏锥虫的主要半胱氨酸蛋白酶克鲁萨因(CRZ)被描述为恰加斯氏病的治疗目标,该病影响了全球数百万人。因此,已经研究了一系列CRZ抑制剂,包括新型竞争性抑制剂Nequimed176(NEQ176)。然而,CRZ抑制的结构和动态基础仍然不清楚。希望为对CRZ抑制机理中的时间尺度动力学的这种不断发展的理解做出贡献,我们已经在pH 5.5的水性溶剂中对两个CRZ系统进行了100ns分子动力学(MD)模拟的首次研究:载脂蛋白形式的CRZ (不含配体)和CRZ复合到NEQ176。根据MD模拟,该酶在apo形式中呈开放构象,在NEQ176-CRZ复合物中呈闭合构象。我们还建议,这种封闭的构象与NEQ176和CRZ之间的氢键相互作用有关,该相互作用通过关键残基(主要是Gly66,Met68,Asn69和Leu160)发生。此外,互相关分析显示了Ala110-Asp140,Leu160-Gly189和Glu190-Gly215子域之间相关运动的证据,以及与Ala1-Thr59和Asp60-Pro90区有关的运动对于CRZ活动。

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