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在酵母中精确切除细菌转座子Tn5

Precise excision of bacterial transposon Tn5 in yeast.

作者信息

Gordenin D A, Trofimova M V, Shaburova O N, Pavlov Y I, Chernoff Y O, Chekuolene Y V, Proscyavichus Y Y, Sasnauskas K V, Janulaitis A A

机构信息

Department of Genetics, State University of Leningrad, USSR.

出版信息

Mol Gen Genet. 1988 Aug;213(2-3):388-93. doi: 10.1007/BF00339607.

Abstract

We have demonstrated that precise excision of bacterial transposon Tn5 can occur in the yeast, Saccharomyces cerevisiae. Tn5 insertions in the yeast gene LYS2 were generated by transposon mutagenesis made in Escherichia coli by means of a lambda::Tn5 vector. Nine insertions of Tn5 into the structural part of the yeast LYS2 gene situated in a shuttle episomal plasmid were selected. All the plasmids with a Tn5 insertion were used to transform yeast strains carrying a deletion of the entire LYS2 gene or a deletion of the part of LYS2 overlapping the point of insertion. All insertions inactivated the LYS2 gene and were able to revert with low (about 10(-8) frequencies to lysine prototrophy. Restriction analysis of revertant plasmids revealed them to be indistinguishable from the original plasmid without Tn5 insertion. DNA sequencing of the regions containing the points of insertions, made for two revertants, proved that Tn5 excision was completely precise.

摘要

我们已经证明,细菌转座子Tn5可以在酿酒酵母中精确切除。通过λ::Tn5载体在大肠杆菌中进行转座子诱变,在酵母基因LYS2中产生Tn5插入。选择了9个Tn5插入位于穿梭附加体质粒中的酵母LYS2基因结构部分。所有带有Tn5插入的质粒都用于转化携带整个LYS2基因缺失或与插入点重叠的LYS2部分缺失的酵母菌株。所有插入都使LYS2基因失活,并能够以低频率(约10^(-8))回复到赖氨酸原养型。对回复体质粒的限制性分析表明,它们与未插入Tn5的原始质粒没有区别。对两个回复体进行的含有插入点区域的DNA测序证明,Tn5切除是完全精确的。

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