Department of Molecular and Cell Biology, University of California, Berkeley, California, USA.
Mol Cell Biol. 2013 Oct;33(19):3962-71. doi: 10.1128/MCB.00792-13. Epub 2013 Aug 5.
The eukaryotic reverse transcriptase, telomerase, adds tandem telomeric repeats to chromosome ends to promote genome stability. The fully assembled telomerase holoenzyme contains a ribonucleoprotein (RNP) catalytic core and additional proteins that modulate the ability of the RNP catalytic core to elongate telomeres. Electron microscopy (EM) structures of Tetrahymena telomerase holoenzyme revealed a central location of the relatively uncharacterized p50 subunit. Here we have investigated the biochemical and structural basis for p50 function. We have shown that the p50-bound RNP catalytic core has a relatively low rate of tandem repeat synthesis but high processivity of repeat addition, indicative of high stability of enzyme-product interaction. The rate of tandem repeat synthesis is enhanced by p50-dependent recruitment of the holoenzyme single-stranded DNA binding subunit, Teb1. An N-terminal p50 domain is sufficient to stimulate tandem repeat synthesis and bridge the RNP catalytic core, Teb1, and the p75 subunit of the holoenzyme subcomplex p75/p19/p45. In cells, the N-terminal p50 domain assembles a complete holoenzyme that is functional for telomere maintenance, albeit at shortened telomere lengths. Also, in EM structures of holoenzymes, only the N-terminal domain of p50 is visible. Our findings provide new insights about subunit and domain interactions and functions within the Tetrahymena telomerase holoenzyme.
真核逆转录酶端粒酶将串联的端粒重复序列添加到染色体末端,以促进基因组稳定性。完全组装的端粒酶全酶包含一个核糖核蛋白(RNP)催化核心和其他调节 RNP 催化核心延伸端粒能力的蛋白质。四膜虫端粒酶全酶的电子显微镜(EM)结构揭示了相对未被表征的 p50 亚基的中央位置。在这里,我们研究了 p50 功能的生化和结构基础。我们已经表明,p50 结合的 RNP 催化核心具有相对较低的串联重复合成率,但具有较高的重复添加的进程性,表明酶-产物相互作用的稳定性较高。p50 依赖性招募全酶单链 DNA 结合亚基 Teb1 增强了串联重复合成的速率。p50 的 N 端结构域足以刺激串联重复合成并桥接 RNP 催化核心、 Teb1 和全酶亚复合物 p75/p19/p45 的 p75 亚基。在细胞中,N 端 p50 结构域组装成完整的全酶,可用于端粒维持,但端粒长度缩短。此外,在全酶的 EM 结构中,只有 p50 的 N 端结构域可见。我们的发现提供了关于四膜虫端粒酶全酶中亚基和结构域相互作用和功能的新见解。