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模板导向的寡核苷酸连接的保真度与聚合酶功能的必然性。

The fidelity of template-directed oligonucleotide ligation and the inevitability of polymerase function.

作者信息

James K D, Ellington A D

机构信息

Department of Chemistry, Indiana University, USA.

出版信息

Orig Life Evol Biosph. 1999 Aug;29(4):375-90. doi: 10.1023/a:1006544611320.

Abstract

The first living systems may have employed template-directed oligonucleotide ligation for replication. The utility of oligonucleotide ligation as a mechanism for the origin and evolution of life is in part dependent on its fidelity. We have devised a method for evaluating ligation fidelity in which ligation substrates are selected from random sequence libraries. The fidelities of chemical and enzymatic ligation are compared under a variety of conditions. While reaction conditions can be found that promote high fidelity copying, departure from these conditions leads to error-prone copying. In particular, ligation reactions with shorter oligonucleotide substrates are less efficient but more faithful. These results support a model for origins in which there was selective pressure for template-directed oligonucleotide ligation to be gradually supplanted by mononucleotide polymerization.

摘要

最早的生命系统可能利用模板导向的寡核苷酸连接进行复制。寡核苷酸连接作为生命起源和进化机制的效用部分取决于其保真度。我们设计了一种评估连接保真度的方法,其中连接底物从随机序列文库中选择。在各种条件下比较化学连接和酶促连接的保真度。虽然可以找到促进高保真复制的反应条件,但偏离这些条件会导致易出错的复制。特别是,与较短寡核苷酸底物的连接反应效率较低但更准确。这些结果支持了一个起源模型,即在该模型中存在选择压力,使得模板导向的寡核苷酸连接逐渐被单核苷酸聚合所取代。

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