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一系列用于cDNA定向克隆和cre/lox介导的质粒切除的酵母/大肠杆菌λ表达载体。

A series of yeast/Escherichia coli lambda expression vectors designed for directional cloning of cDNAs and cre/lox-mediated plasmid excision.

作者信息

Brunelli J P, Pall M L

机构信息

Department of Genetics and Cell Biology, Washington State University, Pullman 99164-4234.

出版信息

Yeast. 1993 Dec;9(12):1309-18. doi: 10.1002/yea.320091204.

DOI:10.1002/yea.320091204
PMID:8154182
Abstract

A series of Saccharomyces cerevisiae/Escherichia coli lambda/plasmid expression vectors have been constructed which allow easy excision of the plasmid sequences from lambda. Features of six are described, and two designated lambda PG15 and lambda AD5, are characterized in detail. Transcription of cloned sequences is controlled by the alternative promoters, ADH2, PGK, GAL10 and SV40 early, and by the CYC1 transcriptional terminator. Unique EcoRI and XhoI restriction sites in the intervening polylinker make these lambda vectors compatible for directional cloning of 'ZAP'-synthesized cDNAs. Inserted DNAs have been previously shown to have high levels of the genetic activity in both S. cerevisiae and E. coli, allowing these vectors to be used for genetic complementation in both species. Plasmid recovery from the lambda vector is mediated by the activity of the cre-encoded enzyme upon lox sequences flanking the plasmid and adjoining the lambda arms. The plasmids contain the yeast 2 microns origin and E. coli pBR322 origin, the URA3 or TRP1 yeast selectable markers, and ampicillin-resistance marker in E. coli. The usefulness of the lambda PG15 and the lambda AD5 cloning vectors was demonstrated by constructing large Neurospora crassa cDNA libraries. The lambda PG15-N. crassa library was used to infect purE, purC and trpC mutants of E. coli, and complemented and/or suppressed prototrophic colonies were selected. The flexibility and power of this system for cloning of cDNAs is discussed.

摘要

已经构建了一系列酿酒酵母/大肠杆菌λ/质粒表达载体,这些载体能使质粒序列从λ中轻松切除。描述了其中六种载体的特征,并详细表征了两种命名为λPG15和λAD5的载体。克隆序列的转录由交替启动子ADH2、PGK、GAL10和SV40早期启动子以及CYC1转录终止子控制。间隔多克隆位点中的独特EcoRI和XhoI限制性位点使这些λ载体适用于“ZAP”合成的cDNA的定向克隆。先前已证明插入的DNA在酿酒酵母和大肠杆菌中均具有高水平的遗传活性,从而使这些载体可用于这两个物种的遗传互补。从λ载体中回收质粒是由cre编码的酶作用于位于质粒两侧并与λ臂相邻的lox序列介导的。这些质粒含有酵母2μm原点和大肠杆菌pBR322原点、URA3或TRP1酵母选择标记以及大肠杆菌中的氨苄青霉素抗性标记。通过构建大型粗糙脉孢菌cDNA文库证明了λPG15和λAD5克隆载体的实用性。使用λPG15-粗糙脉孢菌文库感染大肠杆菌的purE、purC和trpC突变体,并选择互补和/或抑制的原养型菌落。讨论了该cDNA克隆系统的灵活性和强大功能。

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