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Senataxin resolves RNA:DNA hybrids forming at DNA double-strand breaks to prevent translocations

机译:Senataxin解决了在DNA双链断裂处形成的RNA:DNA杂合体以防止易位

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摘要

Ataxia with oculomotor apraxia 2 (AOA-2) and amyotrophic lateral sclerosis (ALS4) are neurological disorders caused by mutations in the gene encoding for senataxin (SETX), a putative RNA:DNA helicase involved in transcription and in the maintenance of genome integrity. Here, using ChIP followed by high throughput sequencing (ChIP-seq), we report that senataxin is recruited at DNA double-strand breaks (DSBs) when they occur in transcriptionally active loci. Genome-wide mapping unveiled that RNA:DNA hybrids accumulate on DSB-flanking chromatin but display a narrow, DSB-induced, depletion near DNA ends coinciding with senataxin binding. Although neither required for resection nor for timely repair of DSBs, senataxin was found to promote Rad51 recruitment, to minimize illegitimate rejoining of distant DNA ends and to sustain cell viability following DSB production in active genes. Our data suggest that senataxin functions at DSBs in order to limit translocations and ensure cell viability, providing new insights on AOA2/ALS4 neuropathies.
机译:动眼性失用症2(AOA-2)和肌萎缩性侧索硬化症(ALS4)的共济失调是神经系统疾病,由编码senataxin(SETX)的基因突变引起,后者是一种假定的RNA:DNA解旋酶,参与转录并维持基因组完整性。在这里,我们使用ChIP,然后进行高通量测序(ChIP-seq),我们报道当其在转录活性基因座中出现时,senataxin被募集到DNA双链断裂(DSB)处。全基因组图谱揭示了RNA:DNA杂合体在DSB侧边的染色质上积累,但在DNA末端附近显示出窄的,DSB诱导的耗尽,这与senataxin结合相吻合。尽管既不需要切除也不需要及时修复DSB,但发现senataxin可以促进Rad51募集,最大程度地减少远端DNA末端的非法重新结合,并在活性基因产生DSB之后维持细胞活力。我们的数据表明,senataxin在DSB起作用,以限制转位并确保细胞活力,从而提供了对AOA2 / ALS4神经病的新见解。

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