吉林大学学报(理学版)

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水环境下α-丙氨酸分子手性的转变机制

王佐成1,2, 佟华1, 王丽萍1, 赵衍辉1, 于天荣2, 梅泽民3   

  1. 1. 白城师范学院 物理学院, 吉林 白城 137000; 2. 吉林大学 原子与分子物理研究所, 长春 130012;3. 白城师范学院 化学学院, 吉林 白城 137000
  • 收稿日期:2014-03-31 出版日期:2015-01-26 发布日期:2015-01-19
  • 通讯作者: 梅泽民 E-mail:Zeminmei@163.com

α-Alanine Molecule Chiral Shift Mechanism in Water

WANG Zuocheng1,2, TONG Hua1, WANG Liping1, ZHAO Yanhui1, YU Tianrong2, MEI Zemin3   

  1. 1. College of Physics, Baicheng Normal University, Baicheng 137000, Jilin Province, China;2. Institute of Atomic and Molecular Physics, Jilin University, Changchun 130012, China;3. College of Chemistry, Baicheng Normal University, Baicheng 137000, Jilin Province, China
  • Received:2014-03-31 Online:2015-01-26 Published:2015-01-19
  • Contact: MEI Zemin E-mail:Zeminmei@163.com

摘要:

基于密度泛函理论考察水环境下α-丙氨酸分子手性转变机制, 通过寻找水环境下α-丙氨酸手性转变过程过渡态及中间体等极值点的结构,  绘制水环境下α-丙氨酸分子手性碳上氢原子转移及形成中间体异构过程的反应势能面. 结果表明: 与孤立条件的手性转变过程相比, 以单个和两个水分子为桥梁的氢原子从手性碳向羰基氧转移过程的能垒从325.5 kJ/mol分别降为200.6,173.0 kJ/mol; 氢原子从羰基氧再迁移到手性碳另一侧的能垒从229.2 kJ/mol分别降为105.3,73.5 kJ/mol. 这是由于水分子在α-丙氨酸分子对映体手性转变过程中具有催化作用, 即生命体内存在微量右旋丙氨酸的机制是水参与了左旋丙氨酸手性转变过程, 降低了反应能垒所致.

关键词: 手性, &alpha, -丙氨酸, 密度泛函理论, 过渡态

Abstract:

Based on density functional theory, the α-alanine molecule chiral transition mechanism in water was investigated. Having found the structures of heterogeneous transition states and intermediates at peak energy values of α-alanine in water, we drew up the potential energy surface of chiral hydrogen transfer isomerization processes α-alanine molecule in water. Compared with the isolated chiral transition, those with single or two water molecules as hydrogen transfer bridges made the transfer process energy barrier for H from chiral C to carbonyl O reduced from 325.5 kJ/mol to 200.6,173.0 kJ/mol respectively, and the energy barrier for H from carbonyl O to the other side of chiral C reduced from 229.2 kJ/mol to 105.3,73.5 kJ/mol respectively. The results reveal water molecules catalyze the chiral enantiomer transformation process of α-alanine, illustrating a possible source of a very small amount of D-alanine in vivo, which is due to water participiting in L-alanine chiral transition.

Key words: chiral, α-alanine, density functional theory, transition state

中图分类号: 

  • O641.12