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Molecular Dynamics Simulation Study on the Mechanism of the Inhibition of ATP Hydrolysis with Inhibitors in Human Papillomavirus Type 18 E1 Helicase

机译:人乳头瘤病毒18型E1螺旋酶抑制剂抑制ATP水解机理的分子动力学模拟研究

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The biphenylsulfonacetic acid and its derivatives were found to inhibit ATP hydrolysis by an allosteric mechanism involving tyrosine 486 of HPV6 E1 Helicase as well as tyrosine 492 of HPV 18 E1. A theoretical study on the binding conformations and allosteric function of these inhibitors has been carried out using docking analysis and molecular dynamics (MD) simulation. The appropriate binding orientations and conformations of the (biphenyl-4-ylsulfonyl) acetic acid interacting with HPV 18 E1 were revealed by the docking study. The MD simulation results obtained from NAMD showed that the binding of (biphenyl-4-ylsulfonyl) acetic acid at the site of Tyr492 was stabilizing around the Lys490 of HPV18 E1, the active site of its ATP hydrolysis. And the protein structure near its predicted allosteric and active sites of HPV 18 E1 has been altered after the binding of the inhibitor to the protein E1 with the different second structure type and length, suggesting that this compound could change the structure conformation near the active center of E1, through which exerts its enzyme-inhibiting function. A series of biphenylsulfonacetic acid derivatives, the reported HPV18 E1 inhibitors, have been then analyzed by docking study. The results revealed that all these compounds could stably bind to the protein with a good binding free energy, suggesting these derivatives could exert a similar allosteric effect on the E1 protein. Taken together, these theoretical results can offer useful references for understanding the mechanisms of allosteric effect of these compounds and directing the molecular design of this kind of inhibitor with improved activity.
机译:发现双苯基磺酸及其衍生物通过涉及HPV6 E1螺旋酶的酪氨酸486的变构机制抑制ATP水解,以及HPV 18e1的酪氨酸492。使用对接分析和分子动力学(MD)模拟已经进行了对这些抑制剂的结合构象和变构函数的理论研究。通过对接研究揭示了与HPV 18E1相互作用的(联苯-4-烯磺酰基)乙酸相互作用的适当结合取向和构象。从Namd获得的MD模拟结果表明(联苯基-4-烯磺酰基)乙酸在Tyr492的位点围绕HPV18 E1的Lys490稳定,其ATP水解的活性位点稳定。并且在其预测的蛋白质E1的预测变构和活性位点附近的蛋白质结构在用不同的第二结构类型和长度与蛋白质E1结合后已经改变,表明该化合物可以改变活跃中心附近的结构符合E1,通过施加酶抑制功能。通过对接研究分析了一系列的二苯基磺酸衍生物,报道的HPV18 E1抑制剂。结果表明,所有这些化合物都能稳定地与具有良好结合能量的蛋白质结合,表明这些衍生物可以对E1蛋白产生类似的变构作用。在一起,这些理论结果可以提供有用的参考,用于了解这些化合物的变构效果的机制,并引导这种抑制剂的分子设计改善的活性。

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