Dahlén Maria, Sunnerhagen Per, Wang Teresa S-F
Department of Pathology, Stanford University School of Medicine, Stanford, California 94305-5324, USA.
Mol Cell Biol. 2003 May;23(9):3031-42. doi: 10.1128/MCB.23.9.3031-3042.2003.
We investigated the effects of fission yeast replication genes on telomere length maintenance and identified 20 mutant alleles that confer lengthening or shortening of telomeres. The telomere elongation was telomerase dependent in the replication mutants analyzed. Furthermore, the telomerase catalytic subunit, Trt1, and the principal initiation and lagging-strand synthesis DNA polymerase, Polalpha, were reciprocally coimmunoprecipitated, indicating these proteins physically coexist as a complex in vivo. In a polalpha mutant that exhibited abnormal telomere lengthening and slightly reduced telomere position effect, the cellular level of the Trt1 protein was significantly lower and the coimmunoprecipitation of Trt1 and Polalpha was severely compromised compared to those in the wild-type polalpha cells. Interestingly, ectopic expression of wild-type polalpha in this polalpha mutant restored the cellular Trt1 protein to the wild-type level and shortened the telomeres to near-wild-type length. These results suggest that there is a close physical relationship between the replication and telomerase complexes. Thus, mutation of a component of the replication complex can affect the telomeric complex in maintaining both telomere length equilibrium and telomerase protein stability.
我们研究了裂殖酵母复制基因对端粒长度维持的影响,并鉴定出20个导致端粒延长或缩短的突变等位基因。在所分析的复制突变体中,端粒延长依赖于端粒酶。此外,端粒酶催化亚基Trt1与主要的起始和后随链合成DNA聚合酶Polα相互进行共免疫沉淀,表明这些蛋白质在体内以复合物形式物理共存。在一个表现出端粒异常延长且端粒位置效应略有降低的polα突变体中,与野生型polα细胞相比,Trt1蛋白的细胞水平显著降低,Trt1与Polα的共免疫沉淀严重受损。有趣的是,在该polα突变体中异位表达野生型polα可使细胞Trt1蛋白恢复到野生型水平,并使端粒缩短至接近野生型长度。这些结果表明,复制复合物与端粒酶复合物之间存在密切的物理关系。因此,复制复合物组分的突变可影响端粒复合物维持端粒长度平衡和端粒酶蛋白稳定性。