Williams Pamela A, Cosme Jose, Vinkovic Dijana Matak, Ward Alison, Angove Hayley C, Day Philip J, Vonrhein Clemens, Tickle Ian J, Jhoti Harren
Astex Technology, 436 Cambridge Science Park, Milton Road, Cambridge, CB4 0QA, UK.
Science. 2004 Jul 30;305(5684):683-6. doi: 10.1126/science.1099736. Epub 2004 Jul 15.
Cytochromes P450 (P450s) metabolize a wide range of endogenous compounds and xenobiotics, such as pollutants, environmental compounds, and drug molecules. The microsomal, membrane-associated, P450 isoforms CYP3A4, CYP2D6, CYP2C9, CYP2C19, CYP2E1, and CYP1A2 are responsible for the oxidative metabolism of more than 90% of marketed drugs. Cytochrome P450 3A4 (CYP3A4) metabolizes more drug molecules than all other isoforms combined. Here we report three crystal structures of CYP3A4: unliganded, bound to the inhibitor metyrapone, and bound to the substrate progesterone. The structures revealed a surprisingly small active site, with little conformational change associated with the binding of either compound. An unexpected peripheral binding site is identified, located above a phenylalanine cluster, which may be involved in the initial recognition of substrates or allosteric effectors.
细胞色素P450(P450s)可代谢多种内源性化合物和外源性物质,如污染物、环境化合物和药物分子。微粒体、膜相关的P450同工型CYP3A4、CYP2D6、CYP2C9、CYP2C19、CYP2E1和CYP1A2负责90%以上上市药物的氧化代谢。细胞色素P450 3A4(CYP3A4)代谢的药物分子比所有其他同工型的总和还多。在此,我们报告了CYP3A4的三种晶体结构:未结合配体、与抑制剂美替拉酮结合以及与底物孕酮结合。这些结构显示出一个出人意料的小活性位点,与任一化合物结合时几乎没有构象变化。确定了一个位于苯丙氨酸簇上方的意外外周结合位点,其可能参与底物或变构效应剂的初始识别。