Sridhar Jayalakshmi, Goyal Navneet, Liu Jiawang, Foroozesh Maryam
Department of Chemistry, Xavier University of Louisiana, 1 Drexel Dr., New Orleans, LA 70125, USA.
Molecules. 2017 Jul 8;22(7):1143. doi: 10.3390/molecules22071143.
The cytochrome P450 (CYP) family 1A enzymes, CYP1A1 and CYP1A2, are two of the most important enzymes implicated in the metabolism of endogenous and exogenous compounds through oxidation. These enzymes are also known to metabolize environmental procarcinogens into carcinogenic species, leading to the advent of several types of cancer. The development of selective inhibitors for these P450 enzymes, mitigating procarcinogenic oxidative effects, has been the focus of many studies in recent years. CYP1A1 is mainly found in extrahepatic tissues while CYP1A2 is the major CYP enzyme in human liver. Many molecules have been found to be metabolized by both of these enzymes, with varying rates and/or positions of oxidation. A complete understanding of the factors that govern the specificity and potency for the two CYP 1A enzymes is critical to the development of effective inhibitors. Computational molecular modeling tools have been used by several research groups to decipher the specificity and potency factors of the CYP1A1 and CYP1A2 substrates. In this review, we perform a thorough analysis of the computational studies that are ligand-based and protein-ligand complex-based to catalog the various factors that govern the specificity/potency toward these two enzymes.
细胞色素P450(CYP)1A家族的酶,即CYP1A1和CYP1A2,是通过氧化作用参与内源性和外源性化合物代谢的两种最重要的酶。已知这些酶还能将环境中的前致癌物代谢为致癌物质,从而引发多种癌症。近年来,开发针对这些P450酶的选择性抑制剂以减轻前致癌氧化作用,一直是众多研究的重点。CYP1A1主要存在于肝外组织中,而CYP1A2是人类肝脏中的主要CYP酶。已发现许多分子可被这两种酶代谢,氧化速率和/或氧化位置各不相同。全面了解控制这两种CYP 1A酶特异性和效力的因素对于开发有效的抑制剂至关重要。几个研究小组已使用计算分子建模工具来解读CYP1A1和CYP1A2底物的特异性和效力因素。在本综述中,我们对基于配体和基于蛋白质-配体复合物的计算研究进行了全面分析,以梳理出控制对这两种酶特异性/效力的各种因素。