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一种用于酵母和细菌基因插入诱变及融合分析的Tn10-lacZ-kanR-URA3基因融合转座子。

A Tn10-lacZ-kanR-URA3 gene fusion transposon for insertion mutagenesis and fusion analysis of yeast and bacterial genes.

作者信息

Huisman O, Raymond W, Froehlich K U, Errada P, Kleckner N, Botstein D, Hoyt M A

出版信息

Genetics. 1987 Jun;116(2):191-9. doi: 10.1093/genetics/116.2.191.

Abstract

We describe here a new variant of transposon Tn10 especially adapted for transposon analysis of cloned yeast genes; it can equally well be used for analysis of prokaryotic genes. We have applied this element to analysis of the LEU2, RAD50, and CDC48 genes of Saccharomyces cerevisiae. This transposon, nicknamed mini-Tn10-LUK, contains a lacZ gene without efficient transcription or translation start signals, an intact URA3 gene, and a kanR determinant. The lacZ gene can be activated by appropriate insertion of the element into an actively expressed gene. Other yeast genes can easily be substituted for URA3 in the available constructs. The mini-Tn10-LUK system has several important advantages. Transposition events occur in Escherichia coli at high frequency and into many different sites in yeast DNA. It is easy to obtain enough insertions to sensitively define the functional limits of a gene. Transposon insertions can be obtained in a single step by standard transposon procedures and can be screened immediately for phenotype either in yeast or in E. coli. The LacZ phenotypes of the insertion mutations provide a good circumstantial indication of the orientation of the target gene. Under favorable circumstances, usable lacZ protein fusions are created. Transposon insertion mutations obtained by this method directly facilitate additional genetic, functional, physical and DNA sequence analysis of the gene or region of interest.

摘要

我们在此描述一种转座子Tn10的新变体,它特别适用于对克隆的酵母基因进行转座子分析;它同样也可用于原核基因的分析。我们已将此元件应用于酿酒酵母LEU2、RAD50和CDC48基因的分析。这种转座子,昵称为mini-Tn10-LUK,包含一个没有高效转录或翻译起始信号的lacZ基因、一个完整的URA3基因和一个kanR决定簇。通过将该元件适当插入到一个活跃表达的基因中,lacZ基因可被激活。在现有的构建体中,其他酵母基因可以很容易地替代URA3。mini-Tn10-LUK系统有几个重要优点。转座事件在大肠杆菌中高频发生,并可插入酵母DNA的许多不同位点。很容易获得足够多的插入来灵敏地界定一个基因的功能界限。通过标准的转座子程序可以一步获得转座子插入,并且可以立即在酵母或大肠杆菌中筛选其表型。插入突变的LacZ表型为靶基因的方向提供了很好的间接指示。在有利的情况下,可产生有用的lacZ蛋白融合体。通过这种方法获得的转座子插入突变直接有助于对感兴趣的基因或区域进行额外的遗传、功能、物理和DNA序列分析。

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Br Med J. 1946 Aug 10;2(4466):185-91.
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One-step gene disruption in yeast.酵母中的一步基因破坏
Methods Enzymol. 1983;101:202-11. doi: 10.1016/0076-6879(83)01015-0.
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Genetic organization of transposon Tn10.转座子Tn10的基因组织
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