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人成纤维细胞永生化过程中的端粒动力学、端对端融合及端粒酶激活

Telomere dynamics, end-to-end fusions and telomerase activation during the human fibroblast immortalization process.

作者信息

Ducray C, Pommier J P, Martins L, Boussin F D, Sabatier L

机构信息

CEA, DSV/DRR/Laboratoire de Radiobiologie et Oncologie BP6, Fontenay-aux-Roses, France.

出版信息

Oncogene. 1999 Jul 22;18(29):4211-23. doi: 10.1038/sj.onc.1202797.

DOI:10.1038/sj.onc.1202797
PMID:10435634
Abstract

Loss of telomeric repeats during cell proliferation could play a role in senescence. It has been generally assumed that activation of telomerase prevents further telomere shortening and is essential for cell immortalization. In this study, we performed a detailed cytogenetic and molecular characterization of four SV40 transformed human fibroblastic cell lines by regularly monitoring the size distribution of terminal restriction fragments, telomerase activity and the associated chromosomal instability throughout immortalization. The mean TRF lengths progressively decreased in pre-crisis cells during the lifespan of the cultures. At crisis, telomeres reached a critical size, different among the cell lines, contributing to the peak of dicentric chromosomes, which resulted mostly from telomeric associations. We observed a direct correlation between short telomere length at crisis and chromosomal instability. In two immortal cell lines, although telomerase was detected, mean telomere length still continued to decrease whereas the number of dicentric chromosomes associated was stabilized. Thus telomerase could protect specifically telomeres which have reached a critical size against end-to-end dicentrics, while long telomeres continue to decrease, although at a slower rate as before crisis. This suggests a balance between elongation by telomerase and telomere shortening, towards a stabilized 'optimal' length.

摘要

细胞增殖过程中端粒重复序列的丢失可能在衰老中起作用。一般认为端粒酶的激活可防止端粒进一步缩短,并且对细胞永生化至关重要。在本研究中,我们通过在整个永生化过程中定期监测末端限制片段的大小分布、端粒酶活性以及相关的染色体不稳定性,对四种SV40转化的人成纤维细胞系进行了详细的细胞遗传学和分子特征分析。在培养的生命周期中,危机前细胞的平均TRF长度逐渐减少。在危机时,端粒达到临界大小,各细胞系之间有所不同,这导致双着丝粒染色体数量达到峰值,这主要是由端粒关联引起的。我们观察到危机时短端粒长度与染色体不稳定性之间存在直接相关性。在两个永生细胞系中,虽然检测到了端粒酶,但平均端粒长度仍继续减少,而相关双着丝粒染色体的数量则稳定下来。因此,端粒酶可以特异性地保护已达到临界大小的端粒免受端对端双着丝粒的影响,而长端粒则继续减少,尽管速度比危机前慢。这表明端粒酶介导的延长与端粒缩短之间存在一种平衡,趋向于稳定的“最佳”长度。

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