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RNA世界的起源:基因与代谢的共同进化。

The origin of the RNA world: co-evolution of genes and metabolism.

作者信息

Copley Shelley D, Smith Eric, Morowitz Harold J

机构信息

University of Colorado at Boulder, CIRES, Campus Box 216, Boulder, CO 80309, USA.

出版信息

Bioorg Chem. 2007 Dec;35(6):430-43. doi: 10.1016/j.bioorg.2007.08.001. Epub 2007 Sep 25.

Abstract

Discoveries demonstrating that RNA can serve genetic, catalytic, structural, and regulatory roles have provided strong support for the existence of an RNA World that preceded the origin of life as we know it. Despite the appeal of this idea, it has been difficult to explain how macromolecular RNAs emerged from small molecules available on the early Earth. We propose here a mechanism by which mutual catalysis in a pre-biotic network initiated a progression of stages characterized by ever larger and more effective catalysts supporting a proto-metabolic network, and the emergence of RNA as the dominant macromolecule due to its ability to both catalyze chemical reactions and to be copied in a template-directed manner. This model suggests that many features of modern life, including the biosynthetic pathways leading to simple metabolites, the structures of organic and metal ion cofactors, homochirality, and template-directed replication of nucleic acids, arose long before the RNA World and were retained as pre-biotic systems became more sophisticated.

摘要

发现表明RNA可发挥遗传、催化、结构和调节作用,这为我们所知的生命起源之前存在RNA世界提供了有力支持。尽管这个想法很有吸引力,但很难解释大分子RNA是如何从早期地球上可用的小分子中产生的。我们在此提出一种机制,通过这种机制,前生物网络中的相互催化启动了一系列阶段,其特征是出现越来越大且更有效的催化剂来支持原始代谢网络,以及由于RNA既能催化化学反应又能以模板导向的方式进行复制,从而使其成为占主导地位的大分子。该模型表明,现代生命的许多特征,包括导致简单代谢物的生物合成途径、有机和金属离子辅因子的结构、同手性以及核酸的模板导向复制,在RNA世界之前就已出现,并且随着前生物系统变得更加复杂而得以保留。

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