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The solution structure of an essential stem-loop of human telomerase RNA

机译:人类端粒酶RNA必需茎环的溶液结构

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The ribonucleoprotein enzyme telomerase maintains chromosome ends in most eukaryotes and is critical for a cell's genetic stability and its proliferative viability. All telomerases contain a catalytic protein component homologous to viral reverse transcriptases (TERT) and an RNA (TR) that provides the template sequence as well as a scaffold for ribonucleoprotein assembly. Vertebrate telomerase RNAs have three essential domains: the template, activation and stability domains. Here we report the NMR structure of an essential RNA element derived from the human telomerase RNA activation domain. The sequence forms a stem-loop structure stabilized by a GU wobble pair formed by two of the five unpaired residues capping a short double helical region. The remaining three loop residues are in a well-defined conformation and form phosphate-base stacking interactions reminiscent of other RNA loop structures. Mutations of these unpaired nucleotides abolish enzymatic activity. The structure rationalizes a number of biochemical observations, and allows us to propose how the loop may function in the telomerase catalytic cycle. The pre-formed structure of the loop exposes the bases of these three essential nucleotides and positions them to interact with other RNA sequences within TR, with the reverse transcriptase or with the newly synthesized telomeric DNA strand. The functional role of this stem-loop appears to be conserved in even distantly related organisms such as yeast and ciliates.
机译:核糖核酸蛋白端粒酶可以维持大多数真核生物的染色体末端,对于细胞的遗传稳定性及其增殖能力至关重要。所有端粒酶均包含与病毒逆转录酶(TERT)和RNA(TR)同源的催化蛋白成分,RNA提供模板序列以及用于核糖核蛋白装配的支架。脊椎动物端粒酶RNA具有三个必不可少的域:模板,激活和稳定性域。在这里,我们报告了源自人类端粒酶RNA激活域的基本RNA元件的NMR结构。该序列形成由GU摆动对稳定的茎环结构,所述GU摆动对由覆盖短双螺旋区的五个未配对残基中的两个残基形成。其余三个环残基处于明确定义的构象中,形成磷酸酯碱基堆积相互作用,使人联想到其他RNA环结构。这些未配对核苷酸的突变消除了酶活性。该结构使许多生化观察合理化,并允许我们提出该环如何在端粒酶催化循环中起作用。环的预先形成的结构暴露了这三个必需核苷酸的碱基,并使其与TR中的其他RNA序列,逆转录酶或新合成的端粒DNA链相互作用。这种茎环的功能作用似乎在甚至远缘相关的生物(例如酵母和纤毛虫)中也得以保留。

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