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Eukaryotic DNA segments capable of autonomous replication in yeast.

机译:能够在酵母中自主复制的真核DNA片段。

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摘要

A selective scheme is presented for isolating sequences capable of replicating autonomously in the yeast Saccharomyces cerevisiae. YIp5, a vector that contains the yeast gene ura3, does not transform a ura3 deletion mutant to Ura+. Hybrid YIp5-Escherichia coli DNA molecules also fail to produce transformants. However, collections of molecular hybrids between YIp5 and DNA from any of six eukaryotes tested (S. cerevisiae, Neurospora crassa, Dictyostelium discoideum Ceanhorabditis elegans, Drosophila melanogaster, and Zea mays) do transform the deletion mutant. The Ura+ transformants grow slowly, are unstable under nonselective conditions, and carry the transforming DNA as autonomously replicating, supercoiled circular molecules. Such a phenotype is qualitatively identical to that of strains transformed by molecules containing a yeast chromosomal origin of replication. Thus, these DNA hybrid molecules may contain eukaryotic origins of replication. The isolated sequences may be useful in determiing the signals controlling DNA replication in yeast and in studying both DNA replication and transformation in other eukaryotic organisms.
机译:提出了一种选择性方案,用于分离能够在酿酒酵母中自主复制的序列。包含酵母基因ura3的载体YIp5不会将ura3缺失突变体转化为Ura +。杂种YIp5-大肠杆菌DNA分子也无法产生转化体。但是,从所测试的六个真核生物(酿酒酵母,神经孢子虫,盘基网柄线虫,果蝇果蝇和果蝇)中,YIp5和DNA之间的分子杂交体集合确实可以转化缺失突变体。 Ura +转化子生长缓慢,在非选择性条件下不稳定,并携带转化DNA作为自主复制的超螺旋环状分子。这种表型在质量上与由含有酵母染色体复制起点的分子转化的菌株的表型相同。因此,这些DNA杂合分子可能包含真核复制起点。分离的序列可用于确定控制酵母中DNA复制的信号,以及用于研究其他真核生物中DNA复制和转化的信号。

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