Department of Chemistry and Biochemistry, University of California, Los Angeles, CA 90095-1569, USA.
Proc Natl Acad Sci U S A. 2011 Dec 20;108(51):20325-32. doi: 10.1073/pnas.1100279108. Epub 2011 Aug 15.
Telomerase is a unique reverse transcriptase that catalyzes the addition of telomere DNA repeats onto the 3' ends of linear chromosomes and plays a critical role in maintaining genome stability. Unlike other reverse transcriptases, telomerase is unique in that it is a ribonucleoprotein complex, where the RNA component [telomerase RNA (TR)] not only provides the template for the synthesis of telomere DNA repeats but also plays essential roles in catalysis, accumulation, TR 3'-end processing, localization, and holoenzyme assembly. Biochemical studies have identified TR elements essential for catalysis that share remarkably conserved secondary structures across different species as well as species-specific domains for other functions, paving the way for high-resolution structure determination of TRs. Over the past decade, structures of key elements from the core, conserved regions 4 and 5, and small Cajal body specific RNA domains of human TR have emerged, providing significant insights into the roles of these RNA elements in telomerase function. Structures of all helical elements of the core domain have been recently reported, providing the basis for a high-resolution model of the complete core domain. We review this progress to determine the overall architecture of human telomerase RNA.
端粒酶是一种独特的逆转录酶,它催化线性染色体 3' 末端的端粒 DNA 重复序列的添加,在维持基因组稳定性方面发挥着关键作用。与其他逆转录酶不同,端粒酶是一种核糖核蛋白复合物,其中 RNA 成分[端粒酶 RNA(TR)]不仅为端粒 DNA 重复序列的合成提供模板,而且在催化、积累、TR 3' 端加工、定位和全酶组装中发挥重要作用。生化研究已经确定了催化所必需的 TR 元件,这些元件在不同物种之间具有惊人保守的二级结构,以及用于其他功能的物种特异性结构域,为 TR 的高分辨率结构测定铺平了道路。在过去的十年中,人类 TR 的核心、保守区 4 和 5 以及小 Cajal 体特异性 RNA 结构域的关键元素的结构已经出现,为这些 RNA 元件在端粒酶功能中的作用提供了重要的见解。核心结构域的所有螺旋结构域的结构最近已经被报道,为完整核心结构域的高分辨率模型提供了基础。我们回顾了这一进展,以确定人类端粒酶 RNA 的总体结构。