Department of Microbiology and Infectious Diseases, Faculty of Medicine and Health Sciences, Université de Sherbrooke, Applied Cancer Research Pavilion, 3201 rue Jean-Mignault, Sherbrooke, QC, J1E 4K8, Canada.
Department of Medicine, McGill University Health Center, McGill University, 1001 Blvd. Décarie, Montreal, QC, H4A 3J1, Canada.
Curr Genet. 2022 Feb;68(1):3-14. doi: 10.1007/s00294-021-01210-2. Epub 2021 Sep 2.
As the limiting component of the budding yeast telomerase, the Tlc1 RNA must undergo multiple consecutive modifications and rigorous quality checks throughout its lifecycle. These steps will ensure that only correctly processed and matured molecules are assembled into telomerase complexes that subsequently act at telomeres. The complex pathway of Tlc1 RNA maturation, involving 5'- and 3'-end processing, stabilisation and assembly with the protein subunits, requires at least one nucleo-cytoplasmic passage. Furthermore, it appears that the pathway is tightly coordinated with the association of various and changing proteins, including the export factor Xpo1, the Mex67/Mtr2 complex, the Kap122 importin, the Sm ring and possibly the CBC and TREX-1 complexes. Although many of these maturation processes also affect other RNA species, the Tlc1 RNA exploits them in a new combination and, therefore, ultimately follows its own and unique pathway. In this review, we highlight recent new insights in maturation and subcellular shuttling of the budding yeast telomerase RNA and discuss how these events may be fine-tuned by the biochemical characteristics of the varying processing and transport factors as well as the final telomerase components. Finally, we indicate outstanding questions that we feel are important to be addressed for a complete understanding of the telomerase RNA lifecycle and that could have implications for the human telomerase as well.
作为芽殖酵母端粒酶的限制成分,Tlc1 RNA 必须在其整个生命周期中经历多个连续的修饰和严格的质量检查。这些步骤将确保只有正确处理和成熟的分子被组装成端粒酶复合物,随后在端粒处发挥作用。Tlc1 RNA 成熟的复杂途径,涉及 5'和 3'端加工、稳定和与蛋白质亚基组装,至少需要一次核质穿梭。此外,该途径似乎与各种变化的蛋白质的关联紧密协调,包括输出因子 Xpo1、Mex67/Mtr2 复合物、Kap122 导入蛋白、Sm 环,以及可能的 CBC 和 TREX-1 复合物。尽管这些成熟过程中的许多过程也会影响其他 RNA 种类,但 Tlc1 RNA 以新的组合利用它们,因此最终遵循自己独特的途径。在这篇综述中,我们强调了芽殖酵母端粒酶 RNA 成熟和亚细胞穿梭的最新新见解,并讨论了这些事件如何通过不同加工和运输因子的生化特性以及最终的端粒酶成分进行微调。最后,我们指出了我们认为对于全面了解端粒酶 RNA 生命周期以及可能对人类端粒酶具有重要意义的悬而未决的问题。