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Oral-Facial-Digital syndrome Type I cells exhibit impaired DNA repair; unanticipated consequences of defective OFD1 outside of the cilia network

机译:口腔 - 面部 - 数字综合征I型细胞表现出DNa修复受损;在纤毛网络之外有缺陷的OFD1的意外后果

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摘要

Defects in OFD1 underlie the clinically complex ciliopathy, Oral-Facial-Digital syndrome Type I (OFD Type I). Our understanding of the molecular, cellular and clinical consequences of impaired OFD1 originate from its characterised roles at the centrosome/basal body/cilia network. Nonetheless, the first described OFD1 interactors were components of the TIP60 histone acetyltransferase complex. We find that OFD1 can also localise to chromatin and its reduced expression is associated with mislocalization of TIP60 in patient-derived cell lines. TIP60 plays important roles in controlling DNA repair. OFD Type I cells exhibit reduced histone acetylation and altered chromatin dynamics in response to DNA double strand breaks (DSBs). Furthermore, reduced OFD1 impaired DSB repair via homologous recombination repair (HRR). OFD1 loss also adversely impacted upon the DSB-induced G2-M checkpoint, inducing a hypersensitive and prolonged arrest. Our findings show that OFD Type I patient cells have pronounced defects in the DSB-induced histone modification, chromatin remodelling and DSB-repair via HRR; effectively phenocopying loss of TIP60. These data extend our knowledge of the molecular and cellular consequences of impaired OFD1, demonstrating that loss of OFD1 can negatively impact upon important nuclear events; chromatin plasticity and DNA repair.
机译:OFD1的缺陷是临床上复杂的睫状体疾病,即I型口面部数字综合征(I型)。我们对受损的OFD1的分子,细胞和临床后果的了解源自其在中心体/基础体/纤毛网络中的特征作用。但是,首先描述的OFD1相互作用子是TIP60组蛋白乙酰转移酶复合物的成分。我们发现OFD1也可以定位于染色质,其减少的表达与患者来源的细胞系中TIP60的定位错误有关。 TIP60在控制DNA修复中起重要作用。 OFD I型细胞响应DNA双链断裂(DSB)表现出降低的组蛋白乙酰化和染色质动力学变化。此外,减少的OFD1通过同源重组修复(HRR)损害了DSB修复。 OFD1的丢失也会对DSB诱导的G2-M检查点产生不利影响,从而导致过敏反应和长期停滞。我们的发现表明,OFD I型患者细胞在通过HRR引起的DSB诱导的组蛋白修饰,染色质重塑和DSB修复方面存在明显缺陷。 TIP60的有效表型丧失。这些数据扩展了我们对受损的OFD1的分子和细胞后果的认识,表明OFD1的丧失可能对重要的核事件产生负面影响。染色质可塑性和DNA修复。

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