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通过体外进化将核酶转化为脱氧核酶。

Conversion of a ribozyme to a deoxyribozyme through in vitro evolution.

作者信息

Paul Natasha, Springsteen Greg, Joyce Gerald F

机构信息

Department of Chemistry, The Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.

出版信息

Chem Biol. 2006 Mar;13(3):329-38. doi: 10.1016/j.chembiol.2006.01.007.

Abstract

An RNA ligase ribozyme was converted to a corresponding deoxyribozyme through in vitro evolution. The ribozyme was prepared as a DNA molecule of the same sequence, and had no detectable activity. A population of randomized variants of this DNA was constructed and evolved to perform RNA ligation at a rate similar to that of the starting ribozyme. When the deoxyribozyme was prepared as an RNA molecule of the same sequence, it had no detectable activity. Thus, the evolutionary transition from an RNA to a DNA enzyme represents a switch, rather than a broadening, of the chemical basis for catalytic function. This transfer of both information and function is relevant to the transition between two different genetic systems based on nucleic acid-like molecules, as postulated to have occurred during the early history of life on Earth.

摘要

一种RNA连接酶核酶通过体外进化被转化为相应的脱氧核酶。该核酶被制备成具有相同序列的DNA分子,且未检测到活性。构建了这个DNA的随机变体群体,并使其进化以实现与起始核酶相似速率的RNA连接。当将脱氧核酶制备成具有相同序列的RNA分子时,未检测到活性。因此,从RNA酶到DNA酶的进化转变代表了催化功能化学基础的一种转变,而非拓宽。这种信息和功能的转移与基于类核酸分子的两种不同遗传系统之间的转变相关,正如推测在地球生命早期历史中所发生的那样。

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