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用于在酿酒酵母中克隆脱氧核糖核酸序列的嵌合质粒。

Chimeric plasmids for cloning of deoxyribonucleic acid sequences in Saccharomyces cerevisiae.

作者信息

Storms R K, McNeil J B, Khandekar P S, An G, Parker J, Friesen J D

出版信息

J Bacteriol. 1979 Oct;140(1):73-82. doi: 10.1128/jb.140.1.73-82.1979.

Abstract

Two sets of plasmids, each carrying a Saccharomyces cerevisiae gene and a portion or all of the yeast 2-micron circle linked to the Escherichia coli plasmid pBR322, have been constructed. One of these sets contains a BamHI fragment of S. cerevisiae deoxyribonucleic acid that includes the yeast his3 gene, whereas the other set contains a BamHI fragment of S. cerevisiae that includes the yeast leu2 gene. All plasmids transform S. cerevisiae and E. coli with a high frequency, possess unique restriction endonuclease sites, and are retrievable from both host organisms. Plasmids carrying the 2.4-megadalton EcoRI fragment of the 2-micron circle transform yeast with 2- to 10-fold greater frequency than those carrying the 1.5-megadalton EcoRI fragment of the 2-micron circle. Restriction endonuclease analysis of plasmics retrieved from S. cerevisiae transformed with plasmics carrying the 2.4-megadalton EcoRI fragment showed that in 13 of 96 cases the original plasmic has acquired an additional copy of the 2-mcron circle. These altered plasmids appear to have arisen by means of an interplasmid recombination event while in S. cerevisiae. A clone bank of S. cerevisiae genes based upon one of these composite plasmids has been constructed. By using this bank and selecting directly in S. cerevisiae, the ura3, tyr1, and met2 genes have been cloned.

摘要

已经构建了两组质粒,每组都携带一个酿酒酵母基因以及与大肠杆菌质粒pBR322相连的酵母2微米环的一部分或全部。其中一组包含酿酒酵母脱氧核糖核酸的一个BamHI片段,该片段包括酵母his3基因,而另一组包含酿酒酵母的一个BamHI片段,该片段包括酵母leu2基因。所有质粒都能高频转化酿酒酵母和大肠杆菌,具有独特的限制性内切酶位点,并且可以从两种宿主生物体中回收。携带2微米环的2.4兆道尔顿EcoRI片段的质粒转化酵母的频率比携带2微米环的1.5兆道尔顿EcoRI片段的质粒高2至10倍。对用携带2.4兆道尔顿EcoRI片段的质粒转化的酿酒酵母中回收的质粒进行限制性内切酶分析表明,在96例中有13例原始质粒获得了2微米环的额外拷贝。这些改变的质粒似乎是在酿酒酵母中通过质粒间重组事件产生的。基于这些复合质粒之一构建了酿酒酵母基因的克隆文库。通过使用该文库并直接在酿酒酵母中进行筛选,ura3、tyr1和met2基因已被克隆。

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