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选择倍性消融,一种高通量质粒转移方案,可鉴定影响拓扑异构酶 I 诱导的 DNA 损伤的新基因。

Selective ploidy ablation, a high-throughput plasmid transfer protocol, identifies new genes affecting topoisomerase I-induced DNA damage.

机构信息

Columbia University Medical Center, Department of Genetics & Development, New York, NY 10032, USA.

出版信息

Genome Res. 2011 Mar;21(3):477-86. doi: 10.1101/gr.109033.110. Epub 2010 Dec 20.

Abstract

We have streamlined the process of transferring plasmids into any yeast strain library by developing a novel mating-based, high-throughput method called selective ploidy ablation (SPA). SPA uses a universal plasmid donor strain that contains conditional centromeres on every chromosome. The plasmid-bearing donor is mated to a recipient, followed by removal of all donor-strain chromosomes, producing a haploid strain containing the transferred plasmid. As proof of principle, we used SPA to transfer plasmids containing wild-type and mutant alleles of DNA topoisomerase I (TOP1) into the haploid yeast gene-disruption library. Overexpression of Top1 identified only one sensitive mutation, rpa34, while overexpression of top1-T(722)A allele, a camptothecin mimetic, identified 190 sensitive gene-disruption strains along with rpa34. In addition to known camptothecin-sensitive strains, this set contained mutations in genes involved in the Rpd3 histone deacetylase complex, the kinetochore, and vesicle trafficking. We further show that mutations in several ESCRT vesicle trafficking components increase Top1 levels, which is dependent on SUMO modification. These findings demonstrate the utility of the SPA technique to introduce plasmids into the haploid gene-disruption library to discover new interacting pathways.

摘要

我们开发了一种新颖的基于交配的高通量方法,称为选择性倍性消融(SPA),从而简化了将质粒转入任何酵母菌株文库的过程。SPA 使用含有每个染色体上条件性着丝粒的通用质粒供体菌株。带有质粒的供体与受体交配,然后去除所有供体菌株染色体,产生含有转移质粒的单倍体菌株。作为原理证明,我们使用 SPA 将含有野生型和突变型 DNA 拓扑异构酶 I(TOP1)等位基因的质粒转入单倍体酵母基因敲除文库。Top1 的过表达仅鉴定出一个敏感突变 rpa34,而 camptothecin 类似物 top1-T(722)A 等位基因的过表达鉴定出 190 个敏感基因敲除菌株以及 rpa34。除了已知的喜树碱敏感菌株外,这组还包含参与 Rpd3 组蛋白去乙酰化酶复合物、动粒和囊泡运输的基因中的突变。我们进一步表明,几种 ESCRT 囊泡运输成分的突变会增加 Top1 水平,这依赖于 SUMO 修饰。这些发现证明了 SPA 技术将质粒引入单倍体基因敲除文库以发现新的相互作用途径的有效性。

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