Ericksen S S, Szklarz G D
Department of Basic Pharmaceutical Sciences, School of Pharmacy, West Virginia University, Morgantown, WV 26506-9530, USA.
J Biomol Struct Dyn. 2005 Dec;23(3):243-56. doi: 10.1080/07391102.2005.10507063.
Cytochrome P450 1A1 oxidizes a diverse range of substrates, including the procarcinogenic xenobiotic benzo[a]pyrene (B[a]P) and endogenous fatty acid precursors of prostaglandins, such as arachidonic acid (AA) and eicosapentaenoic acid (EA). We have investigated the extent to which enzyme-substrate interactions govern regio- and stereoselectivity of oxidation of these compounds by using docking and molecular dynamics (MD) simulations to examine the likelihood of substrate oxidation at various sites. Due to structural differences between the substrates analyzed, B[a]P and its diols (planar, rigid), and the fatty acids AA and EA (long, flexible), different docking strategies were required. B[a]P, B[a]P-7,8-diols, (+) 7S,8S- and (-) 7R,8R-diols, were docked into the active site of a homology model of P450 1A1 using an automated routine, Affinity (Accelrys, San Diego, CA). AA and EA, on the other hand, required a series of restrained MD simulations to obtain a variety of productive binding modes. All complexes were evaluated by MD-based in silico site scoring to predict product profiles based on certain geometric criteria, such as angle and distance of a given substrate atom from the ferryl oxygen. For all substrates studied, the in vitro profiles were generally reflected by the in silico scores, which suggests that steric factors play a key role in determining regiospecificity in P450 1A1-mediated oxidations. We have also shown that molecular dynamics simulations may be very useful in determination of product profiles for structurally diverse substrates of P450 enzymes.
细胞色素P450 1A1可氧化多种底物,包括致癌前体异生物苯并[a]芘(B[a]P)以及前列腺素的内源性脂肪酸前体,如花生四烯酸(AA)和二十碳五烯酸(EA)。我们通过对接和分子动力学(MD)模拟来研究酶-底物相互作用在多大程度上决定了这些化合物氧化的区域选择性和立体选择性,以检验底物在各个位点氧化的可能性。由于所分析的底物之间存在结构差异,即B[a]P及其二醇(平面、刚性),以及脂肪酸AA和EA(长链、柔性),因此需要不同的对接策略。使用自动化程序Affinity(Accelrys,圣地亚哥,加利福尼亚州)将B[a]P、B[a]P - 7,8 -二醇、(+)7S,8S -和(-)7R,8R -二醇对接至P450 1A1同源模型的活性位点。另一方面,AA和EA需要一系列受限的MD模拟来获得多种有效的结合模式。通过基于MD的计算机在位评分对所有复合物进行评估,以根据某些几何标准(例如给定底物原子与铁氧的角度和距离)预测产物谱。对于所有研究的底物,计算机评分通常反映了体外谱,这表明空间因素在决定P450 1A1介导的氧化反应的区域特异性中起关键作用。我们还表明,分子动力学模拟在确定P450酶结构多样的底物的产物谱方面可能非常有用。