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Stalled DNA Replication Forks at the Endogenous GAA Repeats Drive Repeat Expansion in Friedreich’s Ataxia Cells

机译:内源性GAA停滞的DNA复制叉重复驱动Friedreich共济失调细胞重复扩增

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摘要

Friedreich’s ataxia (FRDA) is caused by the expansion of GAA repeats located in the Frataxin (FXN) gene. The GAA repeats continue to expand in FRDA patients, aggravating symptoms and contributing to disease progression. The mechanism leading to repeat expansion and decreased FXN transcription remains unclear. Using single-molecule analysis of replicated DNA, we detected that expanded GAA repeats present a substantial obstacle for the replication machinery at the FXN locus in FRDA cells. Furthermore, aberrant origin activation and lack of a proper stress response to rescue the stalled forks in FRDA cells cause an increase in 3′-5′ progressing forks, which could enhance repeat expansion and hinder FXN transcription by head-on collision with RNA polymerases. Treatment of FRDA cells with GAA-specific polyamides rescues DNA replication fork stalling and alleviates expansion of the GAA repeats, implicating DNA triplexes as a replication impediment and suggesting that fork stalling might be a therapeutic target for FRDA.
机译:Friedreich的共济失调(FRDA)是由Frataxin(FXN)基因中GAA重复序列的扩增引起的。 FRDA患者的GAA重复次数继续增加,加重症状并促进疾病进展。导致重复扩增和减少FXN转录的机制仍不清楚。使用复制的DNA的单分子分析,我们检测到扩展的GAA重复序列对FRDA细胞中FXN位点的复制机制构成了重大障碍。此外,异常的起源激活和缺乏适当的应激反应以拯救FRDA细胞中停滞的叉子,导致3'-5'前进叉子的增加,这可能会增强重复扩增并通过与RNA聚合酶的正面碰撞而阻碍FXN转录。用GAA特异性聚酰胺处理FRDA细胞可挽救DNA复制叉停滞并减轻GAA重复序列的扩增,暗示DNA三链体是复制障碍,并暗示叉子停滞可能是FRDA的治疗目标。

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