Kalita Surajit, Shaik Sason, Dubey Kshatresh Dutta
Department of Chemistry and Center for Informatics, School of Natural Sciences, Shiv Nadar University Dadri, Gautam Buddha Nagar Uttar Pradesh 201314 India
Institute of Chemistry, The Hebrew University of Jerusalem, Edmond J Safra Campus Givat Ram Jerusalem 9140401 Israel
Chem Sci. 2021 Oct 13;12(43):14507-14518. doi: 10.1039/d1sc03489h. eCollection 2021 Nov 10.
An enzyme which is capable of catalyzing C-H amination reactions is considered to be a dream tool for chemists due to its pharmaceutical potential and greener approach. Recently, the Arnold group achieved this feat using an engineered CYP411 enzyme, which further undergoes a random directed evolution which increases its efficiency and selectivity. The present study provides mechanistic insight and the root cause of the success of these mutations to enhance the reactivity and selectivity of the mutant enzyme. This is achieved by means of comprehensive MD simulations and hybrid QM/MM calculations. The study shows that the efficient C-H amination by the engineered CYP411 is a combined outcome of electronic and steric effects. The mutation of the axial cysteine ligand to serine relays electron density to the Fe ion in the heme, and thereby enhances the bonding capability of the heme-iron to the nitrogen atom of the tosyl azide. In comparison, the native cysteine-ligated P450 cannot bind the tosyl azide. Additionally, the A78V and A82L mutations in P411 provide 'bulk' to the active site which increases the enantioselectivity a steric effect. At the same time, the QM/MM calculations elucidate the C-H amination by the iron nitrenoid, revealing a mechanism analogous to Compound in the native C-H hydroxylation by P450.
由于其药学潜力和更环保的方法,一种能够催化C-H胺化反应的酶被认为是化学家梦寐以求的工具。最近,阿诺德团队利用一种工程改造的CYP411酶实现了这一壮举,该酶进一步经历了随机定向进化,提高了其效率和选择性。本研究提供了机理见解以及这些突变成功增强突变酶反应性和选择性的根本原因。这是通过全面的分子动力学(MD)模拟和量子力学/分子力学(QM/MM)计算实现的。研究表明,工程改造的CYP411高效的C-H胺化是电子效应和空间效应共同作用的结果。轴向半胱氨酸配体突变为丝氨酸会将电子密度传递到血红素中的铁离子上,从而增强血红素铁与对甲苯磺酰叠氮氮原子的结合能力。相比之下,天然半胱氨酸连接的P450无法结合对甲苯磺酰叠氮。此外,P411中的A78V和A82L突变使活性位点具有“体积”,从而增加了对映选择性——一种空间效应。同时,QM/MM计算阐明了铁氮烯对C-H的胺化作用,揭示了一种类似于P450天然C-H羟基化中化合物的机制。