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Mitotic Cyclins Regulate Telomeric Recombination in Telomerase-Deficient Yeast Cells

机译:有丝分裂细胞周期蛋白调节端粒酶缺陷型酵母细胞中的端粒重组。

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摘要

Telomerase-deficient mutants of Saccharomyces cerevisiae can survive death by senescence by using one of two homologous recombination pathways. The Rad51 pathway amplifies the subtelomeric Y′ sequences, while the Rad50 pathway amplifies the telomeric TG1-3 repeats. Here we show that telomerase-negative cells require Clb2 (the major B-type cyclin in this organism), in association with Cdc28 (Cdk1), to generate postsenescence survivors at a normal rate. The Rad50 pathway was more sensitive to the absence of Clb2 than the Rad51 pathway. We also report that telomerase RAD50 RAD51 triple mutants still generated postsenescence survivors. This novel Rad50- and Rad51-independent pathway of telomeric recombination also appeared to be controlled by Clb2. In telomerase-positive cells, a synthetic growth defect between mutations in CLB2 and RAD50 or in its partners in the conserved MRX complex, MRE11 and XRS2, was observed. This genetic interaction was independent of Mre11 nuclease activity but was dependent on a DNA repair function. The present data reveal an unexpected role of Cdc28/Clb2 in telomeric recombination during telomerase-independent maintenance of telomeres. They also uncover a functional interaction between Cdc28/Clb2 and MRX during the control of the mitotic cell cycle.
机译:通过使用两种同源重组途径之一,酿酒酵母的端粒酶缺陷型突变体可以通过衰老而存活下来。 Rad51途径扩增亚端粒Y'序列,而Rad50途径扩增端粒TG1-3重复序列。在这里,我们显示端粒酶阴性细胞需要Clb2(该生物中主要的B型细胞周期蛋白)与Cdc28(Cdk1)结合,以正常速率产生衰老后的存活者。 Rad50途径比Rad51途径对Clb2的缺乏更为敏感。我们还报告说,端粒酶RAD50 RAD51三突变体仍然产生衰老后的幸存者。这种新颖的Rad50和Rad51独立的端粒重组途径也似乎受Clb2控制。在端粒酶阳性细胞中,在保守的MRX复合体MRE11和XRS2的CLB2和RAD50或其伴侣之间的突变之间观察到合成的生长缺陷。这种遗传相互作用独立于Mre11核酸酶活性,但取决于DNA修复功能。本数据揭示了在端粒酶非依赖性端粒维持过程中Cdc28 / Clb2在端粒重组中的意外作用。他们还揭示了有丝分裂细胞周期控制过程中Cdc28 / Clb2和MRX之间的功能相互作用。

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