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在酿酒酵母中克隆和表达大肠杆菌 polA(+)基因的质粒。

Plasmid cloning and expression of the E. coli polA (+) gene in S. cerevisiae.

机构信息

Genetics Division, National Institute for Medical Research, NW7 1AA, Mill Hill, London, Great Britain.

出版信息

Curr Genet. 1984 Jul;8(5):333-40. doi: 10.1007/BF00419821.

Abstract

The E. coli polA (+) gene has been subcloned from a specialised λ transducing phage onto a low copy number plasmid. Plasmid-encoded DNA polymerase I was synthesised at 2 to 3 times the wild-type E. coli level, and was biochemically indistinguishable from chromosomally-encoded protein. It was able to counteract the radio sensitivity of polA1, polAex1, polAex2 and polA12 mutants, but no complementation of polA107 mutants occurred, even though the plasmid polA(+) gene was expressed. S. cerevisiae ars-1 or 2 μ replicative sequences were introduced into the polA(+) plasmid. Transformation of yeast with these constructs increased total DNA polymerase levels 2-20 times, depending upon assay conditions. The additional activity was discriminated from yeast DNA polymerases by its ability to use low concentrations of substrate, by its resistance to chemical inhibition, and by co-electrophoresis with pure DNA polymerase I and its proteolytic fragments. The polA(+) gene was expressed in yeast without the aid of yeast promotor sequences. However, deletion of cloned DNA more than 99 base pairs in front of the structural gene prevented expression in yeast but not in E. coli, indicating that the two organisms use different sequences for expression of the plasmid polA(+) gene.

摘要

大肠杆菌 polA(+)基因已从专门的 λ 转导噬菌体亚克隆到低拷贝数质粒上。质粒编码的 DNA 聚合酶 I 的合成水平是野生型大肠杆菌的 2 到 3 倍,在生化性质上与染色体编码的蛋白没有区别。它能够抵消 polA1、polAex1、polAex2 和 polA12 突变体的放射敏感性,但即使质粒 polA(+)基因表达,polA107 突变体也没有得到互补。酵母的 ars-1 或 2 μ 复制序列被引入 polA(+)质粒。这些构建体转化酵母后,总 DNA 聚合酶水平提高了 2 到 20 倍,具体取决于测定条件。额外的活性可以通过其能够使用低浓度底物、对化学抑制的抗性以及与纯 DNA 聚合酶 I 及其蛋白水解片段的共电泳来与酵母 DNA 聚合酶区分开来。polA(+)基因在没有酵母启动子序列帮助的情况下在酵母中表达。然而,在结构基因前 99 个碱基对以上缺失克隆 DNA 会阻止在酵母中的表达,但不会阻止在大肠杆菌中的表达,这表明这两种生物使用不同的序列来表达质粒 polA(+)基因。

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