Xu Gang, Meng Xiao, Xu Lin-Jie, Guo Li, Wu Jian-Ping, Yang Li-Rong
Department of Chemical and Biological Engineering, Institute of Biological Engineering, Zhejiang University, Hangzhou, 310027, China.
Biotechnol Lett. 2015 Apr;37(4):871-80. doi: 10.1007/s10529-014-1747-3. Epub 2015 Feb 4.
Surface residues have a significant impact on the enantioselectivity of lipases. But the molecular basis of this has never been explained. In this work, transition state complexes of Rhizomucor miehei lipase (RmL) and (R)- or (S)-n-butyl 2-phenxypropinate were studied using molecular dynamics. According to comparison between B-factor of the two simulated complexes, the β 1-β 2 loop and α 2 helix were considered the enantioselectivity-determining domains of RmL. Interaction analysis of these domains suggested an Asp(61)-Arg(86) electrostatic interaction linking the loop and helix strongly impacting enantioselectivity of RmL. Modification of Arg(86) by 1, 2-cyclohexanedione weakening this interaction decreased the E ratio from 6 to 1, modification by 1-iodo-2, 3-butanedione covalently bonding Asp(61) and Arg(86) strengthening the interaction increased the E ratio to 45. Dynamics simulation and energy calculation of the modified lipases also displayed corresponding decreases or increases of enantioselectivity.
表面残基对脂肪酶的对映选择性有显著影响。但其分子基础从未得到解释。在这项工作中,使用分子动力学研究了米黑根毛霉脂肪酶(RmL)与(R)-或(S)-2-苯氧基丙酸正丁酯的过渡态复合物。根据两个模拟复合物的B因子比较,β1-β2环和α2螺旋被认为是RmL的对映选择性决定域。对这些结构域的相互作用分析表明,Asp(61)-Arg(86)静电相互作用连接环和螺旋,强烈影响RmL的对映选择性。用1,2-环己二酮修饰Arg(86)削弱这种相互作用,使E值从6降至1,用1-碘-2,3-丁二酮共价连接Asp(61)和Arg(86)增强这种相互作用,使E值增加到45。对修饰后的脂肪酶进行动力学模拟和能量计算,也显示出对映选择性相应的降低或增加。