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端粒长度调控:将DNA末端加工与端粒酶的反馈调控相耦合

Telomere length regulation: coupling DNA end processing to feedback regulation of telomerase.

作者信息

Shore David, Bianchi Alessandro

机构信息

Department of Molecular Biology and NCCR Program 'Frontiers in Genetics', University of Geneva, Sciences III, Geneva, Switzerland.

出版信息

EMBO J. 2009 Aug 19;28(16):2309-22. doi: 10.1038/emboj.2009.195. Epub 2009 Jul 23.

Abstract

The conventional DNA polymerase machinery is unable to fully replicate the ends of linear chromosomes. To surmount this problem, nearly all eukaryotes use the telomerase enzyme, a specialized reverse transcriptase that utilizes its own RNA template to add short TG-rich repeats to chromosome ends, thus reversing their gradual erosion occurring at each round of replication. This unique, non-DNA templated mode of telomere replication requires a regulatory mechanism to ensure that telomerase acts at telomeres whose TG tracts are too short, but not at those with long tracts, thus maintaining the protective TG repeat 'cap' at an appropriate average length. The prevailing notion in the field is that telomere length regulation is brought about through a negative feedback mechanism that 'counts' TG repeat-bound protein complexes to generate a signal that regulates telomerase action. This review summarizes experiments leading up to this model and then focuses on more recent experiments, primarily from yeast, that begin to suggest how this 'counting' mechanism might work. The emerging picture is that of a complex interplay between the conventional DNA replication machinery, DNA damage response factors, and a specialized set of proteins that help to recruit and regulate the telomerase enzyme.

摘要

传统的DNA聚合酶机制无法完全复制线性染色体的末端。为克服这一问题,几乎所有真核生物都使用端粒酶,这是一种特殊的逆转录酶,它利用自身的RNA模板在染色体末端添加富含TG的短重复序列,从而逆转每一轮复制时发生的染色体末端逐渐侵蚀。这种独特的、非DNA模板化的端粒复制模式需要一种调控机制,以确保端粒酶作用于那些TG序列过短的端粒,而不作用于TG序列较长的端粒,从而将保护性的TG重复“帽”维持在适当的平均长度。该领域目前的主流观点是,端粒长度调控是通过一种负反馈机制实现的,该机制“计数”与TG重复序列结合的蛋白质复合物,以产生调节端粒酶作用的信号。本综述总结了导致该模型的实验,然后重点关注了主要来自酵母的最新实验,这些实验开始揭示这种“计数”机制可能的工作方式。新出现的情况是,传统的DNA复制机制、DNA损伤反应因子以及一组有助于募集和调节端粒酶的特殊蛋白质之间存在复杂的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3a2/2735168/2062cfc693a7/emboj2009195f1.jpg

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