Department of Pharmacology, The University of Michigan Medical School , Ann Arbor, Michigan 48109, USA.
Biochemistry. 2013 Jan 15;52(2):355-64. doi: 10.1021/bi301567z. Epub 2013 Jan 4.
The mechanism-based inactivation of cytochrome P450 2B4 (CYP2B4) by 9-ethynylphenanthrene (9EP) has been investigated. The partition ratio and k(inact) are 0.2 and 0.25 min(-1), respectively. Intriguingly, the inactivation exhibits sigmoidal kinetics with a Hill coefficient of 2.5 and an S(50) of 4.5 μM indicative of homotropic cooperativity. Enzyme inactivation led to an increase in mass of the apo-CYP2B4 by 218 Da as determined by electrospray ionization liquid chromatography and mass spectrometry, consistent with covalent protein modification. The modified CYP2B4 was purified to homogeneity and its structure determined by X-ray crystallography. The structure showed that 9EP is covalently attached to Oγ of Thr 302 via an ester bond, which is consistent with the increased mass of the protein. The presence of the bulky phenanthrenyl ring resulted in inward rotations of Phe 297 and Phe 206, leading to a compact active site. Thus, binding of another molecule of 9EP in the active site is prohibited. However, results from the quenching of 9EP fluorescence by unmodified or 9EP-modified CYP2B4 revealed at least two binding sites with distinct affinities, with the low-affinity site being the catalytic site and the high-affinity site on the protein periphery. Computer-aided docking and molecular dynamics simulations with one or two ligands bound revealed that the high-affinity site is situated at the entrance of a substrate access channel surrounded by the F' helix, β1-β2 loop, and β4 loop and functions as an allosteric site to enhance the efficiency of activation of the acetylenic group of 9EP and subsequent covalent modification of Thr 302.
已研究了 9-乙炔基菲(9EP)对细胞色素 P450 2B4(CYP2B4)的基于机制的失活。分配比和 k(inact)分别为 0.2 和 0.25 min(-1)。有趣的是,失活表现出具有 2.5 个希尔系数的 Sigmoidal 动力学,并且 S(50)为 4.5 μM,表明同型协同作用。如电喷雾电离液相色谱和质谱法所确定的,酶失活导致 apo-CYP2B4 的质量增加 218 Da,这与共价蛋白质修饰一致。修饰的 CYP2B4 被纯化至均一性,并通过 X 射线晶体学确定其结构。该结构表明,9EP 通过酯键共价连接到 Thr 302 的 Oγ,这与蛋白质质量的增加一致。庞大的菲环的存在导致 Phe 297 和 Phe 206 的向内旋转,导致活性位点紧凑。因此,禁止 9EP 在活性位点中结合另一个分子。然而,未修饰或 9EP 修饰的 CYP2B4 对 9EP 荧光的猝灭的结果表明存在两个具有不同亲和力的结合位点,其中低亲和力位点是催化位点,而高亲和力位点位于蛋白质外围。与一个或两个配体结合的计算机辅助对接和分子动力学模拟表明,高亲和力位点位于由 F' 螺旋、β1-β2 环和β4 环包围的底物进入通道的入口处,并且作为变构位点,以提高 9EP 的炔基的活化效率和随后对 Thr 302 的共价修饰。