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酵母中的电穿孔刺激重组

Electroporation-stimulated recombination in yeast.

作者信息

Higgins D R, Strathern J N

机构信息

Laboratory of Eukaryotic Gene Expression, National Cancer Institute-Frederick Cancer Research and Development Center, Frederick, Maryland 21702-1201.

出版信息

Yeast. 1991 Nov;7(8):823-31. doi: 10.1002/yea.320070807.

Abstract

Saccharomyces cerevisiae cells treated by high voltage and made transformation-competent (electroporation) are also made hyper-recombinational as determined by an assay that measures interchromosomal mitotic recombination between chromosome III homologs, each containing mutant heteroallelic copies of the trp1 and his3 genes. There is a 10-fold stimulation of Trp+ and 21-fold stimulation of His+ prototrophs. Although this stimulation coincides with conditions for maximal transformation competence it is independent of the presence of transforming plasmid DNA. Electroporation does not increase the reversion frequency of these mutations, nor is there a stimulation in Ty transposition. Among the electroporation-stimulated Trp+ and His+ recombinants there is no dramatic difference in the pattern of events: that is to say that, while there is an increase in the number of recombinants, the distribution of gene conversion and cross-over events among the stimulated recombinants is not significantly altered compared to spontaneously arising Trp+ and His+ recombinants. This electroporation-stimulated recombination is abolished in an isogenic rad52 mutant strain consistent with the increase in Trp+ and His+ prototrophs being the result of a stimulation of a RAD52-dependent recombination pathway.

摘要

经高压处理并具备转化能力(电穿孔法)的酿酒酵母细胞,通过一项检测染色体III同源物间染色体有丝分裂重组的试验确定,其重组活性也会增强。该试验中,每条染色体III同源物均含有trp1和his3基因的突变杂合等位基因拷贝。Trp+原养型细胞受到了10倍的刺激,His+原养型细胞受到了21倍的刺激。尽管这种刺激与最大转化能力的条件相符,但它与转化质粒DNA的存在无关。电穿孔不会增加这些突变的回复频率,也不会刺激Ty转座。在电穿孔刺激产生的Trp+和His+重组体中,事件模式没有显著差异:也就是说,虽然重组体数量增加了,但与自发产生的Trp+和His+重组体相比,受刺激的重组体中基因转换和交叉事件的分布没有明显改变。在同基因的rad52突变菌株中,这种电穿孔刺激的重组被消除,这与Trp+和His+原养型细胞的增加是由RAD52依赖的重组途径的刺激所致相符。

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Electroporation-stimulated recombination in yeast.酵母中的电穿孔刺激重组
Yeast. 1991 Nov;7(8):823-31. doi: 10.1002/yea.320070807.

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