Schopf Patrick, Warshel Arieh
Department of Chemistry, University of Southern California, Los Angeles, California, 90089.
Proteins. 2014 Jul;82(7):1387-99. doi: 10.1002/prot.24506. Epub 2014 Jan 25.
The prospect for computer-aided refinement of stereoselective enzymes is further validated by simulating the ester hydrolysis by the wild-type and mutants of CalB, focusing on the challenge of dealing with strong steric effects and entropic contributions. This was done using the empirical valence bond (EVB) method in a quantitative screening of the enantioselectivity, considering both k(cat) and k(cat)/K(M) of the R and S stereoisomers. Although the simulations require very extensive sampling for convergence they give encouraging results and major validation, indicating that our approach offers a powerful tool for computer-aided design of enantioselective enzymes. This is particularly true in cases with large changes in steric effects where alternative approaches may have difficulties in capturing the interplay between steric clashes with the reacting substrate and protein flexibility.
通过模拟野生型和突变型CalB的酯水解反应,进一步验证了计算机辅助优化立体选择性酶的前景,重点关注应对强空间效应和熵贡献的挑战。这是通过经验价键(EVB)方法在对映选择性的定量筛选中完成的,同时考虑了R和S立体异构体的k(cat)和k(cat)/K(M)。尽管模拟需要非常广泛的采样才能收敛,但它们给出了令人鼓舞的结果和主要验证,表明我们的方法为对映选择性酶的计算机辅助设计提供了一个强大的工具。在空间效应有很大变化的情况下尤其如此,在这些情况下,其他方法可能难以捕捉与反应底物的空间冲突和蛋白质灵活性之间的相互作用。