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A genomewide suppressor and enhancer analysis of cdc13-1 reveals varied cellular processes influencing telomere capping in Saccharomyces cerevisiae.

机译:cdc13-1的全基因组抑制子和增强子分析揭示了影响酿酒酵母端粒封端的各种细胞过程。

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摘要

In Saccharomyces cerevisiae, Cdc13 binds telomeric DNA to recruit telomerase and to "cap" chromosome ends. In temperature-sensitive cdc13-1 mutants telomeric DNA is degraded and cell-cycle progression is inhibited. To identify novel proteins and pathways that cap telomeres, or that respond to uncapped telomeres, we combined cdc13-1 with the yeast gene deletion collection and used high-throughput spot-test assays to measure growth. We identified 369 gene deletions, in eight different phenotypic classes, that reproducibly demonstrated subtle genetic interactions with the cdc13-1 mutation. As expected, we identified DNA damage checkpoint, nonsense-mediated decay and telomerase components in our screen. However, we also identified genes affecting casein kinase II activity, cell polarity, mRNA degradation, mitochondrial function, phosphate transport, iron transport, protein degradation, and other functions. We also identified a number of genes of previously unknown function that we term RTC, for restriction of telomere capping, or MTC, for maintenance of telomere capping. It seems likely that many of the newly identified pathways/processes that affect growth of budding yeast cdc13-1 mutants will play evolutionarily conserved roles at telomeres. The high-throughput spot-testing approach that we describe is generally applicable and could aid in understanding other aspects of eukaryotic cell biology.
机译:在酿酒酵母中,Cdc13结合端粒DNA以募集端粒酶并“覆盖”染色体末端。在温度敏感的cdc13-1突变体中,端粒DNA降解,细胞周期进程受到抑制。为了鉴定能够封端端粒或对无端粒端粒有反应的新型蛋白质和途径,我们将cdc13-1与酵母基因缺失集合相结合,并使用了高通量斑点测试方法来测量生长。我们在八个不同的表型类别中鉴定出369个基因缺失,这些缺失可再现地证明了与cdc13-1突变的微妙遗传相互作用。正如预期的那样,我们在屏幕上确定了DNA损伤检查点,无意义介导的衰变和端粒酶成分。但是,我们还确定了影响酪蛋白激酶II活性,细胞极性,mRNA降解,线粒体功能,磷酸盐转运,铁转运,蛋白质降解和其他功能的基因。我们还鉴定了许多以前未知功能的基因,我们将其称为RTC,用于限制端粒上限,或称为MTC,用于维持端粒上限。似乎许多新发现的影响芽芽酵母cdc13-1突变体生长的途径/过程将在端粒上发挥进化保守的作用。我们描述的高通量点测试方法通常适用,并且可以帮助您了解真核细胞生物学的其他方面。

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