Emergence of homochirality in far-from-equilibrium systems: Mechanisms and role in prebiotic chemistry

被引:141
作者
Plasson, Raphael
Kondepudi, Dilip K.
Bersini, Hugues
Commeyras, Auguste
Asakura, Kouichi
机构
[1] Keio Univ, Fac Sci & Technol, Dept Appl Chem, Yokohama, Kanagawa 223, Japan
[2] Wake Forest Univ, Dept Chem, Winston Salem, NC 27109 USA
[3] Univ Brussels, IRIDA, B-1050 Brussels, Belgium
[4] Univ Montpellier 2, OMEMF, UMR 5073, CC017, F-34095 Montpellier, France
关键词
bifurcation; non-racemic; steady-state; thermodynamics; kinetics;
D O I
10.1002/chir.20440
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Since the model proposed by Frank (Frank FC, Biochem Biophys Acta 1953;11:459-463), several alternative models have been developed to explain how an asymmetric non-racemic steady state can be reached by a chirally symmetric chemical reactive system. This paper explains how a stable non-racemic regime can be obtained as a symmetry breaking occurring in a far-from-equilibrium reactive system initiated with an initial imbalance. Departing from the variations around the original Frank's model that are commonly described in the literature, i.e. open-flow systems of direct autocatalytic reactions, we discuss recent developments emphasizing both an active recycling of components and an autocatalytic network of simple reactions. We will present our APED model as the most natural realization of such thermodynamic openness and non-equilibrium, of recycling and of network autocatalysis, each of these in prebiotic conditions. The different experimental and theoretical models in the literature will be classified according to mechanism. The place and role of such self-structured networks responsible for the presence of homochirality in the primitive Earth will be detailed.
引用
收藏
页码:589 / 600
页数:12
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