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The telomerase RNA pseudoknot is critical for the stable assembly of a catalytically active ribonucleoprotein

机译:端粒酶RNA假结对于催化活性核糖核蛋白的稳定装配至关重要

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Telomerase is a ribonucleoprotein reverse transcriptase that synthesizes telomeric DNA. A pseudoknot structure is phylogenetically conserved within the RNA com- ponent of telomerase in all ciliated protozoans examined. Here, we report that disruptions of the pseudoknot base pairing within the telomerase RNA from Tetrahymena ther- mophila prevent the stable assembly in vivo of an active telomerase. Restoring the base-pairing potential of the pseudoknot by compensatory changes restores telomerase activity to essentially wild-type levels. Therefore, the pseudoknot topology rather than sequence is critical for an active telomerase. Furthermore, we show that disruption of the pseudoknot prevents the association of the RNA with the reverse transcriptase protein subunit of telomerase. Thus, we provide an example of a structural motif within the telomerase RNA that is required for telomerase function and identify the domain that is required for telomerase complex formation. Hence, we identify a biological role for a pseudoknot: pro- moting the stable assembly of a catalytically active ribonu- cleoprotein.
机译:端粒酶是合成端粒DNA的核糖核蛋白逆转录酶。在所有检查过的纤毛原生动物中,端粒酶的RNA成分在系统发育上是保守的。在这里,我们报道了来自四膜膜虫嗜热菌的端粒酶RNA内假结碱基配对的破坏阻止了活性端粒酶在体内的稳定装配。通过补偿性变化恢复假结的碱基配对潜力,可将端粒酶活性恢复至基本野生型水平。因此,对于活性端粒酶而言,假结拓扑而非序列至关重要。此外,我们表明假结的破坏阻止了RNA与端粒酶的逆转录酶蛋白亚基的缔合。因此,我们提供了端粒酶功能所需的端粒酶RNA内结构基序的示例,并鉴定了端粒酶复合物形成所需的结构域。因此,我们确定了假结的生物学作用:促进催化活性核糖蛋白的稳定装配。

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