Computational Study of Substituted 5[H] - Phenanthradin-6-Ones as Poly (ADP-Ribose) Polymerase-1 (PARP-1) Inhibitors by Analog and Structure Based Methods

K. Ravindrachary, M. Ramesh, T. Parthasarathy
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Abstract

The poly (ADP-ribose) polymerase-1 (PARP-1) is an abundant nuclear protein involved in DNA repair and programmed cell death. Substituted 5(H) phenanthradin-6-one analogs were found to be potent PARP-1 inhibitors. Semiempirical methods were used to estimate various physicochemical parameters. The hydration energy (HE), ionization potential (IP), electrophilic index (ω) and partition coefficient ( LogP ) were resulted as independent variables for inhibitory activity of the analogs. The overall increase of HE, IP, and EI and overall decrease of LogP enhance the efficacy of inhibitory nature of these analogs to PARP-1. Docking studies of 5(H) phenanthradin-6-one analogs with PARP-1 were also performed in support of the findings of QSAR studies. Analysis of results of both QSAR and docking studies suggested that remarkable inhibitory activity is exhibited by molecules 9b, 10b1 and 10b2. The hydrogen bond interactions along with hydrophobic and electrostatic interactions are mapped to confirm their potencies.
取代5[H] -菲蒽醌-6-酮作为聚(adp -核糖)聚合酶-1 (PARP-1)抑制剂的模拟和结构计算研究
聚adp核糖聚合酶-1 (PARP-1)是一种丰富的核蛋白,参与DNA修复和程序性细胞死亡。取代的5(H)菲蒽醌6- 1类似物被发现是有效的PARP-1抑制剂。采用半经验方法估计各种理化参数。以水合能(HE)、电离势(IP)、亲电指数(ω)和分配系数(LogP)作为抑制活性的自变量。HE、IP和EI的总体升高和LogP的总体降低增强了这些类似物对PARP-1的抑制作用。5(H)菲蒽醌-6- 1类似物与PARP-1的对接研究也支持了QSAR研究的结果。QSAR和对接研究结果分析表明,分子9b、10b1和10b2表现出显著的抑制活性。氢键相互作用以及疏水和静电相互作用被映射以确认它们的效力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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