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将任何RNA分子的互补DNA快速合成并克隆到质粒和噬菌体M13载体中。

Rapid synthesis and cloning of complementary DNA from any RNA molecule into plasmid and phage M13 vectors.

作者信息

Rutledge R G, Seligy V L, Côté M J, Dimock K, Lewin L L, Tenniswood M P

机构信息

Division of Biological Sciences, National Research Council of Canada, Ottawa.

出版信息

Gene. 1988 Aug 15;68(1):151-8. doi: 10.1016/0378-1119(88)90607-5.

Abstract

We describe several modifications of the Gubler and Hoffman procedure [Gene 25 (1983) 263-269] for complementary DNA (cDNA) synthesis that expand the versatility of this method for the rapid synthesis and cloning of double-stranded (ds) cDNA. These modifications include: (1) The combination of first and second strand synthesis into a single two-step reaction, which reduces the time for synthesis of blunt-ended ds-cDNA to less than 4 h. (2) The use of random hexadeoxyribonucleotide primers (RP) for the synthesis of ds-cDNA, which allows the synthesis of cDNA from any RNA template. (3) The combined use of random primers and DNA ligase treatment of cDNA/RNA hybrids prior to second-strand synthesis, which promotes the production of nearly full length ds-cDNA molecules. (4) The use of gel filtration to size-fractionate ds-cDNA, which allows the selection of specific size classes of ds-cDNA for cloning. (5) The use of blunt-end ligation to insert the ds-cDNA into the vector, which reduces the total time required for the construction of cDNA libraries to less than 24 h.

摘要

我们描述了几种对古布勒和霍夫曼方法[《基因》25(1983)263 - 269]进行的改进,用于互补脱氧核糖核酸(cDNA)合成,这些改进扩展了该方法在双链(ds) cDNA快速合成与克隆方面的通用性。这些改进包括:(1)将第一链和第二链合成合并为一个两步反应,这将平端ds - cDNA的合成时间缩短至不到4小时。(2)使用随机十六聚脱氧核糖核苷酸引物(RP)合成ds - cDNA,这使得能够从任何RNA模板合成cDNA。(3)在第二链合成之前,将随机引物与DNA连接酶处理cDNA/RNA杂交体相结合,这促进了几乎全长ds - cDNA分子的产生。(4)使用凝胶过滤对ds - cDNA进行大小分级分离,这允许选择特定大小类别的ds - cDNA用于克隆。(5)使用平端连接将ds - cDNA插入载体,这将构建cDNA文库所需的总时间缩短至不到24小时。

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