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宇称不守恒与生物分子手性的起源。

Parity violation and the origins of biomolecular handedness.

作者信息

Tranter G E

出版信息

Biosystems. 1987;20(1):37-48. doi: 10.1016/0303-2647(87)90018-9.

Abstract

The violation of parity by the weak interactions ensures that enantiomeric chiral molecules have inequivalent energies, one being inherently stabilized with respect to the other. These parity-violating energy differences have been calculated for a number of fundamental biomolecules including a series of alpha-amino acids, polypeptide structures, and a representative of the sugar series together with its variation over a possible prebiotic reaction path leading to alpha-amino acids. In each case the natural enantiomer found in terrestrial biochemistry was shown to be intrinsically stabilized and preferred over its unnatural enantiomer. The significance of these results in accounting for the prebiotic origins of the terrestrial biomolecular homochirality is discussed and the possible consequences of parity-violating energy differences in mineral catalysts during the prebiotic era considered.

摘要

弱相互作用对宇称的破坏确保了对映体手性分子具有不等价的能量,其中一种相对于另一种在本质上更稳定。已经计算了许多基本生物分子的这些宇称破缺能量差,包括一系列α-氨基酸、多肽结构,以及糖系列的一个代表及其在通向α-氨基酸的可能益生元反应路径上的变化。在每种情况下,地球生物化学中发现的天然对映体都显示出本质上更稳定,并且比其非天然对映体更受青睐。讨论了这些结果在解释地球生物分子同手性的益生元起源方面的意义,并考虑了益生元时代矿物催化剂中宇称破缺能量差的可能后果。

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