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Ciliate telomerase RNA loop IV nucleotides promote hierarchical RNP assembly and holoenzyme stability

机译:纤毛端粒酶RNA环IV核苷酸促进分级的RNP组装和全酶稳定性

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Telomerase adds simple-sequence repeats to chromosome 3′ ends to compensate for the loss of repeats with each round of genome replication. To accomplish this de novo DNA synthesis, telomerase uses a template within its integral RNA component. In addition to providing the template, the telomerase RNA subunit (TER) also harbors nontemplate motifs that contribute to the specialized telomerase catalytic cycle of reiterative repeat synthesis. Most nontemplate TER motifs function through linkage with the template, but in ciliate and vertebrate telomerases, a stem–loop motif binds telomerase reverse transcriptase (TERT) and reconstitutes full activity of the minimal recombinant TERT+TER RNP, even when physically separated from the template. Here, we resolve the functional requirements for this motif of ciliate TER in physiological RNP context using the Tetrahymena thermophila p65-TER-TERT core RNP reconstituted in vitro and the holoenzyme reconstituted in vivo. Contrary to expectation based on assays of the minimal recombinant RNP, we find that none of a panel of individual loop IV nucleotide substitutions impacts the profile of telomerase product synthesis when reconstituted as physiological core RNP or holoenzyme RNP. However, loop IV nucleotide substitutions do variably reduce assembly of TERT with the p65-TER complex in vitro and reduce the accumulation and stability of telomerase RNP in endogenous holoenzyme context. Our results point to a unifying model of a conformational activation role for this TER motif in the telomerase RNP enzyme.
机译:端粒酶在3号染色体末端增加了简单序列重复序列,以补偿每一轮基因组复制过程中重复序列的丢失。为了完成这种从头开始的DNA合成,端粒酶在其不可分割的RNA成分内使用了模板。除提供模板外,端粒酶RNA亚基(TER)还包含非模板基序,这些基元有助于重复重复合成的专门端粒酶催化循环。多数非模板TER基序通过与模板连接而起作用,但在纤毛和脊椎动物端粒酶中,茎环基序结合端粒酶逆转录酶(TERT)并重构最小重组TERT + TER RNP的全部活性,即使与模板物理分离也是如此。 。在这里,我们使用在体外重建的嗜热四膜虫p65-TER-TERT核心RNP和在体内重建的全酶来解决纤毛TER在生理RNP上下文中此基序的功能要求。与基于最小重组RNP测定的预期相反,我们发现当重构为生理核心RNP或全酶RNP时,一组单独的环IV核苷酸取代均不影响端粒酶产物合成的概况。但是,环IV核苷酸取代确实会在体外可变地减少TERT与p65-TER复合物的组装,并减少内源全酶环境下端粒酶RNP的积累和稳定性。我们的结果指向端粒酶RNP酶中TER序列的构象激活作用的统一模型。

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