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酵母质粒DNA的序列组织与表达

Sequence organization and expression of a yeast plasmid DNA.

作者信息

Gubbins E J, Newlon C S, Kann M D, Donelson J E

出版信息

Gene. 1977 May;1(3-4):185-207. doi: 10.1016/0378-1119(77)90045-2.

Abstract

Saccharomyces cerevisiae strain A364A D5 contains circular double-stranded DNA molecules of 6230 +/- 30 base pairs (2mu DNA) which are present in 68 copies per cell and make up 2.4% of the haploid genome. About 0.4% of non-poly A containing yeast RNA hybridizes to the yeast DNA circles. When denatured and then self-annealed, the DNA molecules assume a characteristic "dumbbell" shape in the electron microscope indicating that each circle possesses a non-tandem inverted repeat sequence of 630 +/- 10 base pairs. Eco-RI digestion of purified 2mu DNA yields 4 fragments on an agarose gel whose combined molecular mass is twice that of the monomer circle, suggesting that there are 2 populations of circles, each of the same molecular weight. Representatives of each population have been separated by cloning in Escherichia coli via the bacterial plasmid pSC101. Heteroduplex analysis of the cloned circles show that the 2 different populations arise because of intramolecular recombination between the inverted repeat sequences. Acrylamide gel patterns of polypeptides synthesized in bacterial mini-cells containing the hybrid plasmids between 2mu DNA and pSC101 are significantly different than the pattern obtained from mini-cells containing pSC101 alone.

摘要

酿酒酵母菌株A364A D5含有6230±30个碱基对的环状双链DNA分子(2μm DNA),每个细胞中有68个拷贝,占单倍体基因组的2.4%。约0.4%不含多聚A的酵母RNA与酵母DNA环杂交。当变性后再进行自我退火时,这些DNA分子在电子显微镜下呈现出特征性的“哑铃”形状,表明每个环都拥有一个630±10个碱基对的非串联反向重复序列。用Eco - RI酶切纯化的2μm DNA,在琼脂糖凝胶上产生4个片段,其组合分子量是单体环的两倍,这表明存在两种环群体,每种分子量相同。通过细菌质粒pSC101在大肠杆菌中克隆,已将每种群体的代表分离出来。对克隆环的异源双链分析表明,这两种不同的群体是由于反向重复序列之间的分子内重组产生的。在含有2μm DNA和pSC101之间的杂交质粒的细菌小细胞中合成的多肽的丙烯酰胺凝胶图谱与仅含有pSC101的小细胞所获得的图谱有显著差异。

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