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Suppression of the alternative lengthening of telomere pathway by the chromatin remodelling factor ATRX

机译:染色质重塑因子ATRX抑制端粒途径的替代性延长

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Fifteen per cent of cancers maintain telomere length independently of telomerase by the homologous recombination (HR)-associated alternative lengthening of telomeres (ALT) pathway. A unifying feature of these tumours are mutations in ATRX. Here we show that expression of ectopic ATRX triggers a suppression of the pathway and telomere shortening. Importantly ATRX-mediated ALT suppression is dependent on the histone chaperone DAXX. Re-expression of ATRX is associated with a reduction in replication fork stalling, a known trigger for HR and loss of MRN from telomeres. A G-quadruplex stabilizer partially reverses the effect of ATRX, inferring ATRX may normally facilitate replication through these sequences that, if they persist, promote ALT. We propose that defective telomere chromatinization through loss of ATRX promotes the persistence of aberrant DNA secondary structures, which in turn present a barrier to DNA replication, leading to replication fork stalling, collapse, HR and subsequent recombination-mediated telomere synthesis in ALT cancers.
机译:15%的癌症通过同源重组(HR)相关的端粒替代途径(ALT)途径延长端粒长度,而与端粒酶无关。这些肿瘤的统一特征是ATRX中的突变。在这里,我们表明异位ATRX的表达触发通路的抑制和端粒缩短。重要的是,ATRX介导的ALT抑制取决于组蛋白伴侣DAXX。 ATRX的重新表达与复制叉停滞的减少,HR的已知触发因素以及端粒MRN的丢失有关。 G-四链体稳定剂部分逆转了ATRX的作用,推测ATRX通常可以促进这些序列的复制,如果这些序列持续存在,则会促进ALT。我们提出,通过损失ATRX导致端粒染色质缺陷可促进异常DNA二级结构的持久性,继而为DNA复制提供障碍,从而导致ALT癌中复制叉停滞,塌陷,HR以及随后的重组介导的端粒合成。

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