Dutkiewicz Zbigniew, Mikstacka Renata
Department of Chemical Technology of Drugs, Poznań University of Medical Sciences, Grunwaldzka 6, 60-780 Poznań, Poland.
Department of Inorganic and Analytical Chemistry, Ludwik Rydygier Collegium Medicum, Nicolaus Copernicus University in Toruń, Dr A. Jurasza 2, 85-089 Bydgoszcz, Poland.
Bioinorg Chem Appl. 2018 Jul 25;2018:3924608. doi: 10.1155/2018/3924608. eCollection 2018.
Cytochromes P450 are a class of metalloproteins which are responsible for electron transfer in a wide spectrum of reactions including metabolic biotransformation of endogenous and exogenous substrates. The superfamily of cytochromes P450 consists of families and subfamilies which are characterized by a specific structure and substrate specificity. Cytochromes P450 family 1 (CYP1s) play a distinctive role in the metabolism of drugs and chemical procarcinogens. In recent decades, these hemoproteins have been intensively studied with the use of computational methods which have been recently developed remarkably to be used in the process of drug design by the virtual screening of compounds in order to find agents with desired properties. Moreover, the molecular modeling of proteins and ligand docking to their active sites provide an insight into the mechanism of enzyme action and enable us to predict the sites of drug metabolism. The review presents the current status of knowledge about the use of the computational approach in studies of ligand-enzyme interactions for CYP1s. Research on the metabolism of substrates and inhibitors of CYP1s and on the selectivity of their action is particularly valuable from the viewpoint of cancer chemoprevention, chemotherapy, and drug-drug interactions.
细胞色素P450是一类金属蛋白,负责在包括内源性和外源性底物的代谢生物转化在内的广泛反应中进行电子转移。细胞色素P450超家族由具有特定结构和底物特异性的家族和亚家族组成。细胞色素P450家族1(CYP1s)在药物和化学致癌物的代谢中发挥着独特作用。近几十年来,这些血红蛋白通过计算方法得到了深入研究,这些计算方法最近有了显著发展,可用于药物设计过程中通过虚拟筛选化合物来寻找具有所需特性的药物。此外,蛋白质的分子建模以及配体与它们活性位点的对接,有助于深入了解酶的作用机制,并使我们能够预测药物代谢位点。本综述介绍了在CYP1s配体-酶相互作用研究中使用计算方法的当前知识状况。从癌症化学预防、化疗和药物-药物相互作用的角度来看,对CYP1s底物和抑制剂的代谢及其作用选择性的研究尤为重要。