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酿酒酵母第一条染色体DNA的分子克隆:CEN1-ADE1-CDC15区域的分离与分析

Molecular cloning of chromosome I DNA from Saccharomyces cerevisiae: isolation and analysis of the CEN1-ADE1-CDC15 region.

作者信息

Steensma H Y, Crowley J C, Kaback D B

出版信息

Mol Cell Biol. 1987 Jan;7(1):410-9. doi: 10.1128/mcb.7.1.410-419.1987.

Abstract

To continue the systematic examination of the physical and genetic organization of an entire Saccharomyces cerevisiae chromosome, the DNA from the CEN1-ADE1-CDC15 region from chromosome I was isolated and characterized. Starting with the previously cloned ADE1 gene (J. C. Crowley and D. B. Kaback, J. Bacteriol. 159:413-417, 1984), a series of recombinant lambda bacteriophages containing 82 kilobases of contiguous DNA from chromosome I were obtained by overlap hybridization. The cloned sequences were mapped with restriction endonucleases and oriented with respect to the genetic map by determining the physical positions of the CDC15 gene and the centromeric DNA (CEN1). The CDC15 gene was located by isolating plasmids from a YCp50 S. cerevisiae genomic library that complemented the cdc15-1 mutation. S. cerevisiae sequences from these plasmids were found to be represented among those already obtained by overlap hybridization. The cdc15-1-complementing plasmids all shared only one intact transcribed region that was shown to contain the bona fide CDC15 gene by in vitro gene disruption and one-step replacement to delete the chromosomal copy of this gene. This deletion produced a recessive lethal phenotype that was also recessive to cdc15-1. CEN1 was located by finding a sequence from the appropriate part of the cloned region that stabilized the inheritance of autonomously replicating S. cerevisiae plasmid vectors. Finally, RNA blot hybridization and electron microscopy of R-loop-containing DNA were used to map transcribed regions in the 23 kilobases of DNA that went from CEN1 to CDC15. In addition to the transcribed regions corresponding to the ADE1 and ADC15 genes, this DNA contained five regions that gave rise to polyadenylated RNA, at least two regions complementary to 4S RNA species, and a Ty1 transposable element. Notably, a higher than average proportion of the DNA examined was transcribed into RNA.

摘要

为了继续对酿酒酵母整个染色体的物理和遗传组织进行系统研究,我们分离并鉴定了来自第一条染色体上CEN1-ADE1-CDC15区域的DNA。从先前克隆的ADE1基因(J.C.克劳利和D.B.卡巴克,《细菌学杂志》159:413 - 417,1984年)开始,通过重叠杂交获得了一系列含有来自第一条染色体82千碱基连续DNA的重组λ噬菌体。通过用限制性内切酶对克隆序列进行定位,并通过确定CDC15基因和着丝粒DNA(CEN1)的物理位置来相对于遗传图谱进行定向。通过从一个补充了cdc15 - 1突变的YCp50酿酒酵母基因组文库中分离质粒来定位CDC15基因。发现这些质粒中的酿酒酵母序列在已经通过重叠杂交获得的序列中有所体现。所有能互补cdc15 - 1的质粒仅共享一个完整的转录区域,通过体外基因破坏和一步替换来删除该基因的染色体拷贝,结果表明该区域包含真正的CDC15基因。这种缺失产生了一种隐性致死表型,对cdc15 - 1也是隐性的。通过在克隆区域的适当部分找到一个能稳定自主复制的酿酒酵母质粒载体遗传的序列来定位CEN1。最后,利用RNA印迹杂交和含R环DNA的电子显微镜技术来绘制从CEN1到CDC15的23千碱基DNA中的转录区域。除了与ADE1和ADC15基因相对应的转录区域外,该DNA还包含五个产生聚腺苷酸化RNA的区域、至少两个与4S RNA种类互补的区域以及一个Ty1转座元件。值得注意的是,所检测的DNA转录为RNA的比例高于平均水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4542/365083/034576242989/molcellb00073-0434-a.jpg

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