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首页> 外文期刊>Nucleic Acids Research >A genome-wide screen for essential yeast genes that affect telomere length maintenance.
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A genome-wide screen for essential yeast genes that affect telomere length maintenance.

机译:全基因组筛选,筛选影响端粒长度维持的必需酵母基因。

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Telomeres are structures composed of repetitive DNA and proteins that protect the chromosomal ends in eukaryotic cells from fusion or degradation, thus contributing to genomic stability. Although telomere length varies between species, in all organisms studied telomere length appears to be controlled by a dynamic equilibrium between elongating mechanisms (mainly addition of repeats by the enzyme telomerase) and nucleases that shorten the telomeric sequences. Two previous studies have analyzed a collection of yeast deletion strains (deleted for nonessential genes) and found over 270 genes that affect telomere length (Telomere Length Maintenance or TLM genes). Here we complete the list of TLM by analyzing a collection of strains carrying hypomorphic alleles of most essential genes (DAmP collection). We identify 87 essential genes that affect telomere length in yeast. These genes interact with the nonessential TLM genes in a significant manner, and provide new insights on the mechanisms involved in telomere length maintenance. The newly identified genes span a variety of cellular processes, including protein degradation, pre-mRNA splicing and DNA replication.
机译:端粒是由重复的DNA和蛋白质组成的结构,可保护真核细胞中的染色体末端免于融合或降解,从而有助于基因组稳定性。尽管端粒长度在物种之间变化,但在所有研究的生物中,端粒长度似乎受延长机制(主要是端粒酶重复添加重复序列)和缩短端粒序列的核酸酶之间的动态平衡控制。先前的两项研究分析了一组酵母缺失菌株(删除了非必需基因),发现了影响端粒长度的270多个基因(端粒长度维持或TLM基因)。在这里,我们通过分析一系列携带最基本基因的亚态等位基因的菌株(DAmP集合)来完成TLM列表。我们确定了影响酵母端粒长度的87个必需基因。这些基因以重要的方式与非必需的TLM基因相互作用,并提供有关端粒长度维持机制的新见解。新近鉴定出的基因涵盖了多种细胞过程,包括蛋白质降解,mRNA前剪接和DNA复制。

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