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首页> 外文期刊>Human Molecular Genetics >The Bloom syndrome helicase BLM interacts with TRF2 in ALT cells and promotes telomeric DNA synthesis.
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The Bloom syndrome helicase BLM interacts with TRF2 in ALT cells and promotes telomeric DNA synthesis.

机译:Bloom综合征解旋酶BLM与ALT细胞中的TRF2相互作用并促进端粒DNA合成。

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摘要

Telomerase-negative immortalized human cells maintain telomeres by alternative lengthening of telomeres (ALT) pathway(s), which may involve homologous recombination. We find that endogenous BLM protein co-localizes with telomeric foci in ALT human cells but not telomerase positive immortal cell lines or primary cells. BLM interacts in vivo with the telomeric protein TRF2 in ALT cells, as detected by FRET and co-immunoprecipitation. Transient over-expression of green fluorescent protein (GFP)-BLM results in marked, ALT cell-specific increases in telomeric DNA. The association of BLM with telomeres and its effect on telomere DNA synthesis require a functional helicase domain. Our results identify BLM as the first protein found to affect telomeric DNA synthesis exclusively in human ALT cells and suggest that BLM facilitates recombination-driven amplification of telomeres in ALT cells.
机译:端粒酶阴性的永生人类细胞通过端粒(ALT)信号通路的交替延长来维持端粒,这可能涉及同源重组。我们发现内源性BLM蛋白与ALT人细胞中的端粒灶共定位,但不端粒酶阳性的永生细胞系或原代细胞。如通过FRET和共免疫沉淀法所检测,BLM在体内与ALT细胞中的端粒蛋白TRF2相互作用。瞬时过度表达绿色荧光蛋白(GFP)-BLM会导致端粒DNA出现明显的ALT细胞特异性增加。 BLM与端粒的缔合及其对端粒DNA合成的影响需要功能性解旋酶结构域。我们的研究结果表明BLM是发现的第一个仅在人类ALT细胞中影响端粒DNA合成的蛋白质,并表明BLM促进了ALT细胞中重组驱动的端粒的扩增。

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