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酿酒酵母中孢子形成特异性启动子的分离与鉴定。

Isolation and characterization of sporulation-specific promoters in the yeast Saccharomyces cerevisiae.

作者信息

Coe J G, Murray L E, Kennedy C J, Dawes I W

机构信息

School of Biochemistry, University of New South Wales, Australia.

出版信息

Mol Microbiol. 1992 Jan;6(1):75-81. doi: 10.1111/j.1365-2958.1992.tb00839.x.

Abstract

A library of random yeast genomic DNA:lacZ fusions has been constructed using an episomal yeast-Escherichia coli shuttle vector (pCS1). Plasmid pCS1 requires insertion of a promoter and an in frame ATG codon upstream of its resident truncated lacZ gene to regulate expression in yeast. Yeast genomic DNA fragments of 4-6 kb were generated by partial digestion with Sau3A and ligated into the unique BamHI site of plasmid pCS1 to generate a library of 5 x 10(4) individual E. coli transformants. This library was screened to identify promoter-lacZ fusions that were expressed uniquely during sporulation. Of 342 yeast transformants that exhibited beta-galactosidase activity, two were found to express the lacZ gene in a sporulation-specific manner. This paper presents the characterization of two genomic yeast DNA fragments containing promoters that control lacZ expression during the sporulation process. Expression from the promoter present in plasmid pJC18 occurred from 11-21 hours into the sporulation process, while the promoter in plasmid pJC217 was active from 4-14 hours. Staining of nuclear DNA to correlate nuclear morphology with timing of gene expression showed when each of these promoters was active in terms of the morphological stages of sporulation.

摘要

利用一种附加型酵母 - 大肠杆菌穿梭载体(pCS1)构建了一个随机酵母基因组DNA:lacZ融合文库。质粒pCS1需要在其驻留的截短lacZ基因上游插入一个启动子和一个符合读码框的ATG密码子,以调控酵母中的表达。通过用Sau3A进行部分酶切产生4 - 6 kb的酵母基因组DNA片段,并将其连接到质粒pCS1的唯一BamHI位点,从而产生了一个包含5×10⁴个独立大肠杆菌转化子的文库。对该文库进行筛选,以鉴定在孢子形成过程中特异性表达的启动子 - lacZ融合体。在表现出β - 半乳糖苷酶活性的342个酵母转化子中,发现有两个以孢子形成特异性方式表达lacZ基因。本文介绍了两个含有在孢子形成过程中控制lacZ表达的启动子的酵母基因组DNA片段的特征。质粒pJC18中存在的启动子在孢子形成过程的11 - 21小时开始表达,而质粒pJC217中的启动子在4 - 14小时具有活性。对核DNA进行染色,将核形态与基因表达时间相关联,结果显示了这些启动子在孢子形成的形态学阶段中何时具有活性。

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