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通过接近平衡态的热力学-动力学反馈实现手性对称性破缺和完全手性纯度:对生物手性起源的启示

Chiral symmetry breaking and complete chiral purity by thermodynamic-kinetic feedback near equilibrium: implications for the origin of biochirality.

作者信息

Viedma Cristobal

机构信息

Departamento de Cristalografia y Mineralogía, Facultad de Geología, Universidad Complutense, Ciudad Universitaria, Madrid, Spain.

出版信息

Astrobiology. 2007 Apr;7(2):312-9. doi: 10.1089/ast.2006.0099.

Abstract

Chiral symmetry breaking occurs when a physical or chemical process spontaneously generates a large excess of one of the two enantiomers--left-handed (L) or right-handed (D)--with no preference as to which of the two enantiomers is produced. From the viewpoint of energy, these two enantiomers can exist with an equal probability, and inorganic processes that involve chiral products commonly yield a racemic mixture of both. The fact that biologically relevant molecules exist only as one of the two enantiomers is a fascinating example of complete symmetry breaking in chirality and has long intrigued the science community. The origin of this selective chirality has remained a fundamental enigma with regard to the origin of life since the time of Pasteur, some 140 years ago. Here, it is shown that two populations of chiral crystals of left and right hand cannot coexist in solution: one of the chiral populations disappears in an irreversible autocatalytic process that nurtures the other one. Final and complete chiral purity seems to be an inexorable fate in the course of the common process of growth-dissolution. This unexpected chiral symmetry breaking can be explained by the feedback between the thermodynamic control of dissolution and the kinetics of the growth process near equilibrium. This "thermodynamic-kinetic feedback near equilibrium" is established as a mechanism to achieve complete chiral purity in solid state from a previously solid racemic medium. The way in which this mechanism could operate in solutions of chiral biomolecules is described. Finally, based on this mechanism, experiments designed to search for chiral purity in a new way are proposed: chiral purity of amino acids or biopolymers is predicted in solid phase from a previously solid racemic medium. This process may have played a key role in the origin of biochirality.

摘要

当物理或化学过程自发地产生两种对映体(左旋(L)或右旋(D))之一的大量过量,而对产生两种对映体中的哪一种没有偏好时,就会发生手性对称性破缺。从能量的角度来看,这两种对映体可以以相等的概率存在,并且涉及手性产物的无机过程通常会产生两者的外消旋混合物。生物相关分子仅以两种对映体之一的形式存在这一事实,是手性中完全对称性破缺的一个引人入胜的例子,长期以来一直引起科学界的兴趣。自约140年前巴斯德时代以来,这种选择性手性的起源一直是生命起源方面的一个基本谜团。在这里,研究表明左右手性晶体的两个群体不能在溶液中共存:其中一个手性群体在一个不可逆的自催化过程中消失,这个过程滋养了另一个群体。在生长 - 溶解的常见过程中,最终和完全的手性纯度似乎是不可避免的命运。这种意外的手性对称性破缺可以通过溶解的热力学控制与接近平衡的生长过程动力学之间的反馈来解释。这种“接近平衡的热力学 - 动力学反馈”被确立为一种从先前的固态外消旋介质中在固态中实现完全手性纯度的机制。描述了这种机制在手性生物分子溶液中可能发挥作用的方式。最后,基于这种机制,提出了以新方式寻找手性纯度的实验:从先前的固态外消旋介质中预测固相氨基酸或生物聚合物的手性纯度。这个过程可能在生物手性的起源中起了关键作用。

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