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端粒的维持依赖于双链断裂末端修复所需的活性。

Telomere maintenance is dependent on activities required for end repair of double-strand breaks.

作者信息

Nugent C I, Bosco G, Ross L O, Evans S K, Salinger A P, Moore J K, Haber J E, Lundblad V

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Curr Biol. 1998 May 21;8(11):657-60. doi: 10.1016/s0960-9822(98)70253-2.

Abstract

Telomeres are functionally distinct from ends generated by chromosome breakage, in that telomeres, unlike double-strand breaks, are insulated from recombination with other chromosomal termini [1]. We report that the Ku heterodimer and the Rad50/Mre11/Xrs2 complex, both of which are required for repair of double-strand breaks [2-5], have separate roles in normal telomere maintenance in yeast. Using epistasis analysis, we show that the Ku end-binding complex defined a third telomere-associated activity, required in parallel with telomerase [6] and Cdc13, a protein binding the single-strand portion of telomere DNA [7,8]. Furthermore, loss of Ku function altered the expression of telomere-located genes, indicative of a disruption of telomeric chromatin. These data suggest that the Ku complex and the Cdc13 protein function as terminus-binding factors, contributing distinct roles in chromosome end protection. In contrast, MRE11 and RAD50 were required for the telomerase-mediated pathway, rather than for telomeric end protection; we propose that this complex functions to prepare DNA ends for telomerase to replicate. These results suggest that as a part of normal telomere maintenance, telomeres are identified as double-strand breaks, with additional mechanisms required to prevent telomere recombination. Ku, Cdc13 and telomerase define three epistasis groups required in parallel for telomere maintenance.

摘要

端粒在功能上与染色体断裂产生的末端不同,因为与双链断裂不同,端粒与其他染色体末端的重组绝缘[1]。我们报道,Ku异源二聚体和Rad50/Mre11/Xrs2复合物在双链断裂修复中都是必需的[2 - 5],它们在酵母正常端粒维持中具有不同的作用。通过上位性分析,我们表明Ku末端结合复合物定义了第三种端粒相关活性,它与端粒酶[6]和Cdc13(一种结合端粒DNA单链部分的蛋白质)[7,8]并行发挥作用。此外,Ku功能的丧失改变了端粒定位基因的表达,这表明端粒染色质受到了破坏。这些数据表明,Ku复合物和Cdc13蛋白作为末端结合因子发挥作用,在染色体末端保护中发挥不同的作用。相比之下,MRE11和RAD50是端粒酶介导途径所必需的,而不是端粒末端保护所必需的;我们提出,这个复合物的功能是为端粒酶复制准备DNA末端。这些结果表明,作为正常端粒维持的一部分,端粒被识别为双链断裂,需要额外的机制来防止端粒重组。Ku、Cdc13和端粒酶定义了端粒维持并行所需的三个上位性组。

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