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调控染色体末端的核酸-蛋白质相互作用:端粒酶机制成为焦点。

Orchestrating nucleic acid-protein interactions at chromosome ends: telomerase mechanisms come into focus.

机构信息

Department of Microbiology and Immunology, Weill Cornell Medicine, New York, NY, USA.

Lady Davis Institute for Medical Research, Jewish General Hospital and Department of Anatomy and Cell Biology and Department of Medicine, McGill University, Montreal, Quebec, Canada.

出版信息

Nat Struct Mol Biol. 2023 Jul;30(7):878-890. doi: 10.1038/s41594-023-01022-7. Epub 2023 Jul 3.

Abstract

Telomerase is a special reverse transcriptase ribonucleoprotein dedicated to the synthesis of telomere repeats that protect chromosome ends. Among reverse transcriptases, telomerase is unique in using a stably associated RNA with an embedded template to synthesize a specified sequence. Moreover, it is capable of iteratively copying the same template region (repeat addition processivity) through multiple rounds of RNA-DNA unpairing and reannealing, that is, the translocation reaction. Biochemical analyses of telomerase over the past 3 decades in protozoa, fungi and mammals have identified structural elements that underpin telomerase mechanisms and have led to models that account for the special attributes of telomerase. Notably, these findings and models can now be interpreted and adjudicated through recent cryo-EM structures of Tetrahymena and human telomerase holoenzyme complexes in association with substrates and regulatory proteins. Collectively, these structures reveal the intricate protein-nucleic acid interactions that potentiate telomerase's unique translocation reaction and clarify how this enzyme reconfigures the basic reverse transcriptase scaffold to craft a polymerase dedicated to the synthesis of telomere DNA. Among the many new insights is the resolution of the telomerase 'anchor site' proposed more than 3 decades ago. The structures also highlight the nearly universal conservation of a protein-protein interface between an oligonucleotide/oligosaccharide-binding (OB)-fold regulatory protein and the telomerase catalytic subunit, which enables spatial and temporal regulation of telomerase function in vivo. In this Review, we discuss key features of the structures in combination with relevant functional analyses. We also examine conserved and divergent aspects of telomerase mechanisms as gleaned from studies in different model organisms.

摘要

端粒酶是一种特殊的逆转录酶核糖核蛋白,专门负责合成保护染色体末端的端粒重复序列。在逆转录酶中,端粒酶的独特之处在于它使用稳定结合的 RNA 与嵌入式模板来合成特定序列。此外,它能够通过多次 RNA-DNA 解链和重新退火,即转位反应,重复复制相同的模板区域(重复添加过程)。过去 30 年对原生动物、真菌和哺乳动物中端粒酶的生化分析,确定了支撑端粒酶机制的结构元素,并提出了能够解释端粒酶特殊属性的模型。值得注意的是,这些发现和模型现在可以通过最近与底物和调节蛋白结合的四膜虫和人端粒酶全酶复合物的 cryo-EM 结构来解释和裁决。总的来说,这些结构揭示了促进端粒酶独特转位反应的复杂蛋白质-核酸相互作用,并阐明了该酶如何重新配置基本的逆转录酶支架,以构建专门合成端粒 DNA 的聚合酶。在许多新的见解中,解决了 30 多年前提出的端粒酶“锚定位点”的问题。这些结构还突出了寡核苷酸/寡糖结合(OB)折叠调节蛋白与端粒酶催化亚基之间几乎普遍存在的蛋白质-蛋白质界面,这使得端粒酶功能在体内的时空调节成为可能。在这篇综述中,我们结合相关功能分析讨论了结构的关键特征。我们还检查了从不同模式生物研究中得出的端粒酶机制的保守和分歧方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6490/10539978/fc058944f7e2/nihms-1932226-f0001.jpg

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