Rational Design of P450 aMOx for Improving Anti-Markovnikov Selectivity Based on the “Butterfly” Model
Pan Yue, Bao Jinxiao, Zhang Xingyi, Ni Hui, Zhao Yue, Zhi Fengdong, Fang Bohuan, He Xiao, Zhang John Z. H., Zhang Lujia
Journal:Frontiers in Molecular Biosciences
IF:6.11
DOI:10.3389/fmolb.2022.888721
PMID:35677881
Published:2022-05-23
research field:生殖生物学兽医病毒学动物健康分子流行病学生物安全
Abstract
Aromatic aldehydes are important industrial raw materials mainly synthesized by anti-Markovnikov (AM) oxidation of corresponding aromatic olefins. The AM product selectivity remains a big challenge. P450 aMOx is the first reported enzyme that could catalyze AM oxidation of aromatic olefins. Here, we reported a rational design strategy based on the “butterfly” model of the active site of P450 aMOx. Constrained molecular dynamic simulations and a binding energy analysis of key residuals combined with an experimental alanine scan were applied. As a result, the mutant A275G showed high AM selectivity of >99%. The results also proved that the “butterfly” model is an effective design strategy for enzymes.
本文使用的Yeasen产品


