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在端粒酶活性较弱的酵母细胞中,重组作用既可以帮助维持非常短的端粒,也可以产生更长的端粒。

Recombination can either help maintain very short telomeres or generate longer telomeres in yeast cells with weak telomerase activity.

作者信息

Basenko Evelina, Topcu Zeki, McEachern Michael J

机构信息

Department of Genetics, Fred Davison Life Science Complex, University of Georgia, Athens, GA 30602-7223, USA.

出版信息

Eukaryot Cell. 2011 Aug;10(8):1131-42. doi: 10.1128/EC.05079-11. Epub 2011 Jun 10.

Abstract

Yeast mutants lacking telomerase are able to elongate their telomeres through processes involving homologous recombination. In this study, we investigated telomeric recombination in several mutants that normally maintain very short telomeres due to the presence of a partially functional telomerase. The abnormal colony morphology present in some mutants was correlated with especially short average telomere length and with a requirement for RAD52 for indefinite growth. Better-growing derivatives of some of the mutants were occasionally observed and were found to have substantially elongated telomeres. These telomeres were composed of alternating patterns of mutationally tagged telomeric repeats and wild-type repeats, an outcome consistent with amplification occurring via recombination rather than telomerase. Our results suggest that recombination at telomeres can produce two distinct outcomes in the mutants we studied. In occasional cells, recombination generates substantially longer telomeres, apparently through the roll-and-spread mechanism. However, in most cells, recombination appears limited to helping to maintain very short telomeres. The latter outcome likely represents a simplified form of recombinational telomere maintenance that is independent of the generation and copying of telomeric circles.

摘要

缺乏端粒酶的酵母突变体能够通过涉及同源重组的过程延长其端粒。在本研究中,我们研究了几个突变体中的端粒重组,这些突变体由于存在部分功能性端粒酶而通常维持非常短的端粒。一些突变体中出现的异常菌落形态与特别短的平均端粒长度以及无限生长对RAD52的需求相关。偶尔会观察到一些突变体的生长较好的衍生物,发现它们的端粒大幅延长。这些端粒由突变标记的端粒重复序列和野生型重复序列的交替模式组成,这一结果与通过重组而非端粒酶发生的扩增一致。我们的结果表明,在我们研究的突变体中,端粒处的重组可以产生两种不同的结果。在偶尔的细胞中,重组显然通过滚动和扩展机制产生长得多的端粒。然而,在大多数细胞中,重组似乎仅限于帮助维持非常短的端粒。后一种结果可能代表了一种简化的重组端粒维持形式,它独立于端粒环的产生和复制。

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