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The role of DNA damage response pathways in chromosome fragility in Fragile X syndrome

机译:DNA损伤反应途径在脆性X综合征染色体易碎性中的作用

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摘要

FRAXA is one of a number of fragile sites in human chromosomes that are induced by agents like fluorodeoxyuridine (FdU) that affect intracellular thymidylate levels. FRAXA coincides with a >200 CGG•CCG repeat tract in the 5′ UTR of the FMR1 gene, and alleles prone to fragility are associated with Fragile X (FX) syndrome, one of the leading genetic causes of intellectual disability. Using siRNA depletion, we show that ATR is involved in protecting the genome against FdU-induced chromosome fragility. We also show that FdU increases the number of γ-H2AX foci seen in both normal and patient cells and increases the frequency with which the FMR1 gene colocalizes with these foci in patient cells. In the presence of FdU and KU55933, an ATM inhibitor, the incidence of chromosome fragility is reduced, suggesting that ATM contributes to FdU-induced chromosome fragility. Since both ATR and ATM are involved in preventing aphidicolin-sensitive fragile sites, our data suggest that the lesions responsible for aphidicolin-induced and FdU-induced fragile sites differ. FRAXA also displays a second form of chromosome fragility in absence of FdU, which our data suggest is normally prevented by an ATM-dependent process.
机译:FRAXA是人类染色体中许多易碎位点之一,这些位点是由诸如氟脱氧尿苷(FdU)之类的试剂诱导的,这些试剂会影响细胞内胸苷酸水平。 FRAXA在FMR1基因的5'UTR中与一个大于200的CGG•CCG重复序列相吻合,而易碎的等位基因与脆性X(FX)综合征相关,后者是智力残疾的主要遗传原因之一。使用siRNA耗竭,我们表明ATR参与保护基因组免受FdU诱导的染色体易碎性。我们还显示,FdU增加了在正常细胞和患者细胞中均可见的γ-H2AX病灶数量,并增加了FMR1基因与这些病灶在患者细胞中共定位的频率。在FdU和ATM抑制剂KU55933的存在下,染色体易碎性的发生率降低,这表明ATM有助于FdU诱导的染色体易碎性。由于ATR和ATM均参与了对蚜虫敏敏感的脆弱部位的预防,因此我们的数据表明,负责蚜虫敏和FdU诱导的脆弱部位的病变有所不同。在没有FdU的情况下,FRAXA还显示出染色体易碎性的第二种形式,我们的数据表明,通常可通过ATM依赖性过程来防止这种情况。

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