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含5-溴尿苷的核酶的体外进化

In vitro evolution of a ribozyme that contains 5-bromouridine.

作者信息

Dai X, Joyce G F

机构信息

Department of Chemistry, The Skaggs Institute for Chemical Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Helv Chim Acta. 2000 Sep-Oct;83(8):1701-10. doi: 10.1002/1522-2675(20000809)83:8<1701::AID-HLCA1701>3.0.CO;2-1.

Abstract

The Tetrahymena group I ribozyme was modified by replacing all 99 component uridine residues with 5-bromouridine. This resulted in a 13-fold reduction in catalytic efficiency in the RNA-catalyzed phosphoester-transfer reaction compared to the behavior of the unmodified ribozyme. A population of 10(13) variant ribozymes was constructed, each containing 5-bromouridine in place of uridine. Five successive 'generations' of in vitro evolution were carried out, selecting for improved phosphoester transferase activity. The evolved molecules exhibited a 27-fold increase in catalytic efficiency compared to the wild-type bromouridine-containing ribozyme, even exceeding that of the wild-type ribozyme in the non-brominated form. Three specific mutations were found to be responsible for this altered behavior. These mutations enhanced activity in the context of 5-bromouridine, but were detrimental in the context of unmodified uridine. The evolved RNAs not only tolerated but came to exploit the presence of the nucleotide analogue in carrying out their catalytic function.

摘要

通过用5-溴尿苷取代所有99个组成尿苷残基对嗜热四膜虫I组核酶进行了修饰。与未修饰的核酶相比,这导致在RNA催化的磷酸酯转移反应中催化效率降低了13倍。构建了10¹³个变体核酶群体,每个变体核酶都含有5-溴尿苷取代尿苷。进行了连续五代的体外进化,以筛选出磷酸酯转移酶活性得到改善的核酶。与野生型含溴尿苷的核酶相比,进化后的分子催化效率提高了27倍,甚至超过了非溴化形式的野生型核酶。发现三个特定突变导致了这种行为改变。这些突变在5-溴尿苷存在的情况下增强了活性,但在未修饰的尿苷存在的情况下则有害。进化后的RNA不仅耐受而且利用核苷酸类似物的存在来执行其催化功能。

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