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Telomerase recognizes its template by using an adjacent RNA motif

机译:端粒酶通过使用邻近的RNA基序识别其模板

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Telomerase adds telomeric repeats to chromosome 3′ ends, forestalling the cellular senescence, apoptosis, and genomic instability that result from telomere loss caused by incomplete DNA replication. The telomerase ribonucleoprotein is dedicated to synthesis of tandem, simple-sequence repeats by virtue of its specialization for copying only a specific template region within the integral RNA. Here, using circularly permuted variants of Tetrahymena ther-mophila telomerase RNA, we identify the features that allow recognition of the template region within the RNA. We engineered a template-less telomerase ribonucleoprotein that can position and reverse transcribe an exchangeable RNA oligonucleotide template accurately. Only a short "template-recognition" element sequence tag is required to direct efficient use of adjacent 5′ residues as a template for telomeric repeat synthesis. Our findings reveal molecular requirements for template selection by telomerase and physically resolve templating from other RNA functions in catalysis.
机译:端粒酶在3号染色体的末端增加了端粒重复序列,阻止了由于DNA复制不完全导致端粒丢失而导致的细胞衰老,凋亡和基因组不稳定。端粒酶核糖核蛋白专门用于串联,简单序列重复序列的合成,这是因为其专门用于仅复制整合RNA中的特定模板区域。在这里,我们使用圆形膜翅目嗜热菌端粒酶RNA的圆​​形排列变体,我们确定了可以识别RNA内模板区域的特征。我们设计了一种无模板的端粒酶核糖核蛋白,可以精确定位和逆转录可交换的RNA寡核苷酸模板。只需短的“模板识别”元件序列标签即可指导有效地使用相邻的5'残基作为端粒重复合成的模板。我们的发现揭示了通过端粒酶选择模板的分子要求,并通过物理方法从催化中的其他RNA功能中解析模板。

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