LIU Rong, WANG Zuocheng, YANG Xiaocui, et al. The mechanisms of lysine molecule optical isomerism and hydroxyl radical damage[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2018,57(2):123-130.
LIU Rong, WANG Zuocheng, YANG Xiaocui, et al. The mechanisms of lysine molecule optical isomerism and hydroxyl radical damage[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2018,57(2):123-130.DOI:
This study investigated the optical isomers of lysine molecules with single hydrogen bonds between amino and carboxyl groups
catalysis of water molecule clusters
hydroxyl radical induced lysine damage mechanism and water solvent effect using the B3LYP method of density functional theory
the MP2 method of perturbation theory
and smd model method of self consistent reaction field theory. Study on the reaction channels showed that: the title reaction has two channels A and B
which are stepwise mechanism and synergistic mechenism
respectively. The potential energy surface calculation showed that channel a is the main reaction channel for the isomerization of carboxyl and proton transfer
and the Gibbs free energy barrier is 259.90 kJ·mol
-1
. The catalysis of two water molecule clusters reduces the barrier of channel a to 145.80 kJ·mol
-1
and the water solvent effect further reduces the barrier to 111.22 kJ·mol
-1
Hydroxyl radical and water molecule chain as hydrogen transport medium can cause lysine damage. The energy barrier in water vapor phase is 134.12 kJ·mol
-1
and the water solvent effect makes this barrier fall to 32.62 kJ·mol