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Mre11-Rad50-Xrs2复合物在端粒酶介导的酿酒酵母端粒延长中的作用。

The role of the Mre11-Rad50-Xrs2 complex in telomerase- mediated lengthening of Saccharomyces cerevisiae telomeres.

作者信息

Tsukamoto Y, Taggart A K, Zakian V A

机构信息

Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USA.

出版信息

Curr Biol. 2001 Sep 4;11(17):1328-35. doi: 10.1016/s0960-9822(01)00372-4.

Abstract

BACKGROUND

The Saccharomyces Mre11p, Rad50p, and Xrs2p proteins form a complex, called the MRX complex, that is required to maintain telomere length. Cells lacking any one of the three MRX proteins and Mec1p, an ATM-like protein kinase, undergo telomere shortening and ultimately die, phenotypes characteristic of cells lacking telomerase. The other ATM-like yeast kinase, Tel1p, appears to act in the same pathway as MRX: mec1 tel1 cells have telomere phenotypes similar to those of telomerase-deficient cells, whereas the phenotypes of tel1 cells are not exacerbated by the loss of a MRX protein.

RESULTS

The nuclease activity of Mre11p was found to be dispensable for the telomerase-promoting activity of the MRX complex. The association of the single-stranded TG1-3 DNA binding protein Cdc13p with yeast telomeres occurred efficiently in the absence of Tel1p, Mre11p, Rad50p, or Xrs2p. Targeting of catalytically active telomerase to the telomere suppressed the senescence phenotype of mec1 mrx or mec1 tel1 cells. Moreover, when telomerase was targeted to telomeres, telomere lengthening was robust in mec1 mrx and mec1 tel1 cells.

CONCLUSIONS

These data rule out models in which the MRX complex is necessary for Cdc13p binding to telomeres or in which the MRX complex is necessary for the catalytic activity of telomerase. Rather, the data suggest that the MRX complex is involved in recruiting telomerase activity to yeast telomeres.

摘要

背景

酿酒酵母中的Mre11p、Rad50p和Xrs2p蛋白形成一种称为MRX复合物的复合体,该复合体对于维持端粒长度是必需的。缺乏三种MRX蛋白中的任何一种以及Mec1p(一种ATM样蛋白激酶)的细胞会经历端粒缩短并最终死亡,这些是缺乏端粒酶的细胞的典型表型。另一种ATM样酵母激酶Tel1p似乎与MRX作用于相同的途径:mec1 tel1细胞具有与端粒酶缺陷细胞相似的端粒表型,而tel1细胞的表型不会因MRX蛋白的缺失而加剧。

结果

发现Mre11p的核酸酶活性对于MRX复合物促进端粒酶的活性是可有可无的。在没有Tel1p、Mre11p、Rad50p或Xrs2p的情况下,单链TG1-3 DNA结合蛋白Cdc13p与酵母端粒的结合有效地发生。将具有催化活性的端粒酶靶向端粒可抑制mec1 mrx或mec1 tel1细胞的衰老表型。此外,当端粒酶靶向端粒时,mec1 mrx和mec1 tel1细胞中的端粒延长很显著。

结论

这些数据排除了MRX复合物对于Cdc13p结合端粒是必需的模型,也排除了MRX复合物对于端粒酶的催化活性是必需的模型。相反,数据表明MRX复合物参与将端粒酶活性募集到酵母端粒。

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