School of Science and Technology, UNSAM and CONICET, Campus Migueletes, 25 de Mayo y Francia, Buenos Aires, Argentina.
Department of Chemistry and Rosenstiel Basic Biomedical Sciences Research Institute, MS 015, Brandeis University, 415 South St., Waltham, MA 02454-9110, USA.
J Mol Biol. 2018 Apr 27;430(9):1295-1310. doi: 10.1016/j.jmb.2018.03.014. Epub 2018 Mar 27.
Cytochrome P450 (CYP101A1) catalyzes the stereospecific 5-exo hydroxylation of d-camphor by molecular oxygen. Previously, residual dipolar couplings measured for backbone amide H-N correlations in both substrate-free and bound forms of CYP101A1 were used as restraints in soft annealing molecular dynamic simulations in order to identify average conformations of the enzyme with and without substrate bound. Multiple substrate-dependent conformational changes remote from the enzyme active site were identified, and site-directed mutagenesis and activity assays confirmed the importance of these changes in substrate recognition. The current work makes use of perturbation response scanning (PRS) and umbrella sampling molecular dynamic of the residual dipolar coupling-derived CYP101A1 structures to probe the roles of remote structural features in enforcing the regio- and stereospecific nature of the hydroxylation reaction catalyzed by CYP101A1. An improper dihedral angle Ψ was defined and used to maintain substrate orientation in the CYP101A1 active site, and it was observed that different values of Ψ result in different PRS response maps. Umbrella sampling methods show that the free energy of the system is sensitive to Ψ, and bound substrate forms an important mechanical link in the transmission of mechanical coupling through the enzyme structure. Finally, a qualitative approach to interpreting PRS maps in terms of the roles of secondary structural features is proposed.
细胞色素 P450(CYP101A1)催化 D-樟脑通过分子氧的立体特异性 5-外消旋羟化。以前,在 CYP101A1 的无底物和结合形式的骨架酰胺 H-N 相关的残留偶极耦合测量值被用作软退火分子动力学模拟中的约束条件,以识别酶与无底物结合的平均构象。确定了远离酶活性位点的多个底物依赖性构象变化,并通过定点突变和活性测定证实了这些变化在底物识别中的重要性。目前的工作利用残差偶极耦合衍生的 CYP101A1 结构的扰动响应扫描(PRS)和伞状采样分子动力学,来探测远程结构特征在强制 CYP101A1 催化的羟化反应的区域和立体特异性中的作用。定义了一个不合适的二面角 Ψ,用于在 CYP101A1 活性位点中保持底物的取向,并且观察到不同的 Ψ 值导致不同的 PRS 响应图。伞状采样方法表明,系统的自由能对 Ψ 敏感,并且结合的底物在通过酶结构传递机械耦合中形成重要的机械连接。最后,提出了一种定性方法,根据二级结构特征的作用来解释 PRS 图谱。