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首页> 外文期刊>Molecular and Cellular Biology >Telomerase RNA Template Mutations Reveal Sequence-Specific Requirements for the Activation and Repression of Telomerase Action at Telomeres
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Telomerase RNA Template Mutations Reveal Sequence-Specific Requirements for the Activation and Repression of Telomerase Action at Telomeres

机译:端粒酶RNA模板突变揭示端粒酶激活和抑制端粒酶作用的序列特定要求。

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Telomeric DNA is maintained within a length range characteristic of an organism or cell type. Significant deviations outside this range are associated with altered telomere function. The yeast telomere-binding protein Rap1p negatively regulates telomere length. Telomere elongation is responsive to both the number of Rap1p molecules bound to a telomere and the Rap1p-centered DNA-protein complex at the extreme telomeric end. Previously, we showed that a specific trinucleotide substitution in the Saccharomyces cerevisiae telomerase gene (TLC1) RNA template abolished the enzymatic activity of telomerase, causing the same cell senescence and telomere shortening phenotypes as a complete tlc1 deletion. Here we analyze effects of six single- and double-base changes within these same three positions. All six mutant telomerases had in vitro enzymatic activity levels similar to the wild-type levels. The base changes predicted from the mutations all disrupted Rap1p binding in vitro to the corresponding duplex DNAs. However, they caused two classes of effects on telomere homeostasis: (i) rapid, RAD52-independent telomere lengthening and poor length regulation, whose severity correlated with the decrease in in vitro Rap1p binding affinity (this is consistent with loss of negative regulation of telomerase action at these telomeres; and (ii) telomere shortening that, depending on the template mutation, either established a new short telomere set length with normal cell growth or was progressive and led to cellular senescence. Hence, disrupting Rap1p binding at the telomeric terminus is not sufficient to deregulate telomere elongation. This provides further evidence that both positive and negativecis-acting regulators of telomerase act at telomeres.
机译:端粒DNA保持在生物体或细胞类型的特征长度范围内。超出此范围的显着偏差与端粒功能改变有关。酵母端粒结合蛋白Rap1p负调节端粒长度。端粒伸长对端粒上结合的Rap1p分子的数量以及在极端端粒末端的以Rap1p为中心的DNA-蛋白质复合物都具有响应。以前,我们显示了酿酒酵母端粒酶基因(TLM1)RNA模板中的特定三核苷酸取代消除了端粒酶的酶活性,导致相同的细胞衰老和端粒缩短表型。作为完整的 tlc1 删除。在这里,我们分析了这三个位置中六个单基和双基变化的影响。所有六个突变型端粒酶的体外酶活性水平均与野生型水平相似。从突变预测的碱基变化都破坏了Rap1p在体外与相应双链DNA的结合。然而,它们对端粒稳态产生两类影响:(i)快速,独立于RAD52的端粒延长和差的长度调节,其严重程度与体外Rap1p结合亲和力的降低有关(这与端粒酶负调节的丧失相一致) (ii)端粒缩短,这取决于模板突变,要么建立了新的短端粒固定长度,并具有正常的细胞生长,要么逐渐进行并导致细胞衰老,因此,破坏端粒末端的Rap1p结合是不足以解除对端粒伸长的调节作用,这提供了进一步的证据,表明端粒酶的顺式和反式顺式调节剂均作用于端粒。

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