Li Weihua, Liu Hong, Luo Xiaomin, Zhu Weiliang, Tang Yun, Halpert James R, Jiang Hualiang
Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 555 Zu Chong Zhi Road, Zhangjiang Hi-Tech Park, Shanghai 201203, China.
Drug Metab Dispos. 2007 Apr;35(4):689-96. doi: 10.1124/dmd.106.014019. Epub 2007 Jan 24.
To identify a possible pathway(s) for metyrapone egress from the active site of P450 3A4, a 5-ns conventional molecular dynamics simulation followed by steered molecular dynamics simulations was performed on the complex with metyrapone. The steered molecular dynamics simulations showed that metyrapone egress via channel 1, threading through the B-C loop, only required a relatively small rupture force and small displacement of residues, whereas egress via the third channel, between helix I and helices F' and G', required a relatively large force and perturbation of helices I, B', and C. The conventional dynamics simulation indicated that channel 2, located between the beta1 sheet, B-B' loop, and F'-G' region, is closed because of the movement of residues in the mouth of this channel. The findings suggest that channel 1 can be used for metyrapone egress, whereas both channel 2 and channel 3 have a low probability of serving as an exit channel for metyrapone. In addition, residues F108 and I120 appear to act as two gatekeepers to prevent the inhibitor from leaving the active site. These results are in agreement with previous site-directed mutagenesis experiments.
为了确定美替拉酮从细胞色素P450 3A4活性位点逸出的可能途径,对美替拉酮复合物进行了5纳秒的常规分子动力学模拟,随后进行了引导分子动力学模拟。引导分子动力学模拟表明,美替拉酮通过通道1逸出,穿过B - C环,仅需要相对较小的断裂力和残基的小位移,而通过第三个通道(在螺旋I与螺旋F'和G'之间)逸出则需要相对较大的力以及对螺旋I、B'和C的扰动。常规动力学模拟表明,位于β1折叠、B - B'环和F' - G'区域之间的通道2由于该通道口处残基的移动而关闭。研究结果表明通道1可用于美替拉酮逸出,而通道2和通道3作为美替拉酮出口通道的可能性较低。此外,残基F108和I120似乎充当两个守门人,以防止抑制剂离开活性位点。这些结果与先前的定点诱变实验一致。