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Nuclear-Receptor-Mediated Telomere Insertion Leads to Genome Instability in ALT Cancers

机译:核受体介导的端粒插入导致ALT癌症的基因组不稳定

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The breakage-fusion-bridge cycle is a classical mechanism of telomere-driven genome instability in which dysfunctional telomeres are fused to other chromosomal extremities, creating dicentric chromosomes that eventually break at mitosis. Here, we uncover a distinct pathway of telomere-driven genome instability, specifically occurring in cells that maintain telomeres with the alternative lengthening of telomeres mechanism. We show that, in these cells, telomeric DNA is added to multiple discrete sites throughout the genome, corresponding to regions regulated by NR2C/F transcription factors. These proteins drive local telomere DNA addition by recruiting telomeric chromatin. This mechanism, which we name targeted telomere insertion (TTI), generates potential common fragile sites that destabilize the genome. We propose that TTI driven by NR2C/F proteins contributes to the formation of complex karyotypes in ALT tumors.
机译:断裂-融合-桥循环是端粒驱动的基因组不稳定性的经典机制,其中功能失调的端粒与其他染色体末端融合,形成双中心染色体,最终在有丝分裂时断裂。在这里,我们揭示了端粒驱动的基因组不稳定性的独特途径,特别是在端粒具有替代性延长端粒机制的细胞中。我们显示,在这些细胞中,端粒DNA被添加到整个基因组的多个离散位点,对应于受NR2C / F转录因子调控的区域。这些蛋白质通过募集端粒染色质来驱动局部端粒DNA的添加。我们将这种机制称为靶向端粒插入(TTI),它会产生破坏基因组稳定性的潜在常见易碎位点。我们建议由NR2C / F蛋白驱动的TTI有助于ALT肿瘤中复杂的核型的形成。

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