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二维 NMR 和 CYP119 细胞色素 P450 的全原子分子动力学揭示了隐藏的构象亚稳态。

Two-dimensional NMR and all-atom molecular dynamics of cytochrome P450 CYP119 reveal hidden conformational substates.

机构信息

Department of Pharmaceutical Chemistry, University of California, San Francisco, California 94158-2517.

Simprota Corporation, San Francisco, California 94158.

出版信息

J Biol Chem. 2010 Mar 26;285(13):9594-9603. doi: 10.1074/jbc.M109.087593. Epub 2010 Jan 22.

Abstract

Cytochrome P450 enzymes are versatile catalysts involved in a wide variety of biological processes from hormonal regulation and antibiotic synthesis to drug metabolism. A hallmark of their versatility is their promiscuous nature, allowing them to recognize a wide variety of chemically diverse substrates. However, the molecular details of this promiscuity have remained elusive. Here, we have utilized two-dimensional heteronuclear single quantum coherence NMR spectroscopy to examine a series of mutants site-specific labeled with the unnatural amino acid, [(13)C]p-methoxyphenylalanine, in conjunction with all-atom molecular dynamics simulations to examine substrate and inhibitor binding to CYP119, a P450 from Sulfolobus acidocaldarius. The results suggest that tight binding hydrophobic ligands tend to lock the enzyme into a single conformational substate, whereas weak binding low affinity ligands bind loosely in the active site, resulting in a distribution of localized conformers. Furthermore, the molecular dynamics simulations suggest that the ligand-free enzyme samples ligand-bound conformations of the enzyme and, therefore, that ligand binding may proceed largely through a process of conformational selection rather than induced fit.

摘要

细胞色素 P450 酶是多功能催化剂,参与从激素调节和抗生素合成到药物代谢等各种生物过程。其多功能性的一个特点是它们的混杂性质,允许它们识别各种化学多样性的底物。然而,这种混杂性的分子细节仍然难以捉摸。在这里,我们利用二维异核单量子相干 NMR 光谱技术,结合全原子分子动力学模拟,研究了一系列突变体,这些突变体是用非天然氨基酸 [(13)C]p-甲氧基苯丙氨酸进行定点标记的,以研究底物和抑制剂与 CYP119 的结合,CYP119 是一种来自嗜酸热硫化叶菌的 P450。结果表明,紧密结合的疏水性配体往往将酶锁定在单一构象亚基中,而弱结合的低亲和力配体在活性位点松散结合,导致局部构象的分布。此外,分子动力学模拟表明,无配体的酶可以模拟酶结合配体的构象,因此,配体结合可能主要通过构象选择而不是诱导契合的过程进行。

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