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原始地球上多肽对映体富集的模型。

A model for the enantiomeric enrichment of polypeptides on the primitive earth.

作者信息

Blair N E, Bonner W A

出版信息

Orig Life. 1981 Dec;11(4):331-5. doi: 10.1007/BF00931487.

Abstract

A mixture of D- and L-leucine N-Carboxyanhydride (NCA) having an enantiomeric composition of 65.6% L- and 34.4% D-isomer (i.e. 31.2% enantiomeric excess (e.e)) was polymerized to the extent of 52% with sodium methoxide initiator to yield a polyleucine product the enantiomeric composition of which was 72.7% L- and 27.3% D-leucine (45.4% e.e.). This polymer was in turn partially hydrolyzed by acid, whereupon the unhydrolyzed polyleucine residue was found to have an enantiomeric composition of 77.5% L- and 22.5% D-leucine (55.0% e.e.). Thus the e.e. increase in the partial polymerization step (14.2%) and the partial hydrolysis step (9.6%) combined to total 23.8% for the overall polymerization-hydrolysis sequence. On the basis of these model experiments it is proposed that repetitive partial polymerization hydrolysis reactions, driven by environmental dry-wet cycles, might have been operative on the primitive Earth to engender the abiotic evolution of optically enriched polypeptides.

摘要

将对映体组成为65.6% L-异构体和34.4% D-异构体(即31.2%对映体过量(e.e.))的D-和L-亮氨酸N-羧基酐(NCA)混合物,用甲醇钠引发剂聚合至52%的程度,得到一种聚亮氨酸产物,其对映体组成为72.7% L-亮氨酸和27.3% D-亮氨酸(45.4% e.e.)。该聚合物接着用酸进行部分水解,随后发现未水解的聚亮氨酸残基的对映体组成为77.5% L-亮氨酸和22.5% D-亮氨酸(55.0% e.e.)。因此,在部分聚合步骤中e.e.增加了14.2%,在部分水解步骤中增加了9.6%,在整个聚合-水解序列中总计增加了23.8%。基于这些模型实验,有人提出,在环境干湿循环驱动下的重复部分聚合-水解反应,可能在原始地球上起作用,从而导致光学富集多肽的非生物进化。

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