State Key Laboratory of Crop Stress Biology in Arid Areas, College of Life Sciences, Northwest A&F University, Yangling, Shaanxi 712100, China.
University Lyon, ENS de Lyon, University Claude Bernard, CNRS UMR 5239, INSERM U1210, LBMC, 46 Allée d'Italie Site Jacques Monod, F-69007 Lyon, France.
Nucleic Acids Res. 2021 May 7;49(8):4768-4781. doi: 10.1093/nar/gkab261.
Telomerase plays critical roles in cellular aging, in the emergence and/or development of cancer, and in the capacity for stem-cell renewal, consists of a catalytic telomerase reverse transcriptase (TERT) and a template-encoding RNA (TER). TERs from diverse organisms contain two conserved structural elements: the template-pseudoknot (T-PK) and a helical three-way junction (TWJ). Species-specific features of the structure and function of telomerase make obtaining a more in-depth understanding of the molecular mechanism of telomerase particularly important. Here, we report the first structural studies of N-terminally truncated TERTs from Candida albicans and Candida tropicalis in apo form and complexed with their respective TWJs in several conformations. We found that Candida TERT proteins perform only one round of telomere addition in the presence or absence of PK/TWJ and display standard reverse transcriptase activity. The C-terminal domain adopts at least two extreme conformations and undergoes conformational interconversion, which regulates the catalytic activity. Most importantly, we identified a conserved tertiary structural motif, called the U-motif, which interacts with the reverse transcriptase domain and is crucial for catalytic activity. Together these results shed new light on the structure and mechanics of fungal TERTs, which show common TERT characteristics, but also display species-specific features.
端粒酶在细胞衰老、癌症的出现和/或发展以及干细胞更新能力中起着关键作用,由催化端粒酶逆转录酶 (TERT) 和模板编码 RNA (TER) 组成。来自不同生物体的 TER 包含两个保守的结构元素:模板假结 (T-PK) 和螺旋三链结 (TWJ)。端粒酶结构和功能的物种特异性使得深入了解端粒酶的分子机制尤为重要。在这里,我们报告了来自白色念珠菌和热带念珠菌的 N 端截断 TERT 在 apo 形式及其与各自 TWJ 结合的几种构象中的首次结构研究。我们发现,在存在或不存在 PK/TWJ 的情况下,白色念珠菌和热带念珠菌的 TERT 蛋白仅进行一轮端粒添加,并显示出标准的逆转录酶活性。C 端结构域采用至少两种极端构象,并经历构象转换,从而调节催化活性。最重要的是,我们确定了一个保守的三级结构基序,称为 U 基序,它与逆转录酶结构域相互作用,对催化活性至关重要。这些结果为真菌 TERT 的结构和机制提供了新的认识,这些 TERT 显示出共同的 TERT 特征,但也显示出物种特异性特征。