Structure of the human telomerase RNA pseudoknot reveals conserved tertiary interactions essential for function

Structure of the human telomerase RNA pseudoknot reveals conserved tertiary interactions essential for function
复制标题

DOI:
10.1016/j.molcel.2005.01.017
复制
发表时间:
2005-03-04
期刊:
影响因子:
16
通讯作者:
Feigon, J
Feigon, J
中科院分区:
生物学1区
文献类型:
--
作者:
Theimer, CA;Blois, CA;Feigon, J

文献摘要

被引文献

相似文献

人端粒酶含有 451 nt RNA (hTR) 和多种蛋白质,包括特殊的逆转录酶 (hTERT)。 hTR 的 5' 半部分包含假结(核心)结构域,其中包括端粒合成的 RNA 模板和端粒酶活性所需的高度保守的假结。这里介绍的这种基本假结的溶液结构揭示了螺旋连接处周围的延伸三螺旋。三级相互作用网络解释了系统发育序列的保守性和现有的人类和小鼠 TR 功能研究以及与疾病相关的突变。研究了改变三级接触的突变体 RNA 的热力学稳定性、二聚化潜力和端粒酶活性。端粒酶活性与三级结构稳定性密切相关,而与假结的二聚化潜力没有相关性。这些研究表明,端粒酶活性需要保守的假结三级结构。
Human telomerase contains a 451 nt RNA (hTR) and several proteins, including a specialized reverse transcriptase (hTERT). The 5' half of hTR comprises the pseudoknot (core) domain, which includes the RNA template for telomere synthesis and a highly conserved pseudoknot that is required for telomerase activity. The solution structure of this essential pseudoknot, presented here, reveals an extended triple helix surrounding the helical junction. The network of tertiary interactions explains the phylogenetic sequence conservation and existing human and mouse TR functional studies as well as mutations linked to disease. Thermodynamic stability, dimerization potential, and telomerase activity of mutant RNAs that alter the tertiary contacts were investigated. Telomerase activity is strongly correlated with tertiary structure stability, whereas there is no correlation with dimerization potential of the pseudoknot. These studies reveal that a conserved pseudoknot tertiary structure is required for telomerase activity.