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The prionlike domain of FUS is multiphosphorylated following DNA damage without altering nuclear localization

机译:DNA损伤后,FUS的ion病毒样结构域被多磷酸化,而不会改变核的定位

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FUS (fused in sarcoma) is an abundant, predominantly nuclear protein involved in RNA processing. Under various conditions, FUS functionally associates with RNA and other macromolecules to form distinct, reversible phase-separated liquid structures. Persistence of the phase-separated state and increased cytoplasmic localization are both hypothesized to predispose FUS to irreversible aggregation, which is a pathological hallmark of subtypes of amyotrophic lateral sclerosis and frontotemporal dementia. We previously showed that phosphorylation of FUS’s prionlike domain suppressed phase separation and toxic aggregation, proportionally to the number of added phosphates. However, phosphorylation of FUS’s prionlike domain was previously reported to promote its cytoplasmic localization, potentially favoring pathological behavior. Here we used mass spectrometry and human cell models to further identify phosphorylation sites within FUS’s prionlike domain, specifically following DNA-damaging stress. In total, 28 putative sites have been identified, about half of which are DNA-dependent protein kinase (DNA-PK) consensus sites. Custom antibodies were developed to confirm the phosphorylation of two of these sites (Ser-26 and Ser-30). Both sites were usually phosphorylated in a subpopulation of cellular FUS following a variety of DNA-damaging stresses but not necessarily equally or simultaneously. Importantly, we found DNA-PK–dependent multiphosphorylation of FUS’s prionlike domain does not cause cytoplasmic localization.
机译:FUS(融合在肉瘤中)是一种丰富的,主要是核蛋白,参与RNA加工。在各种条件下,FUS在功能上与RNA和其他大分子结合形成独特的,可逆的相分离液体结构。假设相分离状态的持续存在和胞质定位的增加都可能使FUS易于发生不可逆的聚集,这是肌萎缩性侧索硬化和额颞痴呆亚型的病理学标志。先前我们已经证明,FUS病毒样结构域的磷酸化会抑制相分离和毒性聚集,与添加的磷酸盐数量成正比。然而,先前报道FUS US病毒样结构域的磷酸化促进了其胞质定位,可能有利于病理行为。在这里,我们使用质谱和人类细胞模型进一步确定了FUS病毒样结构域内的磷酸化位点,特别是在DNA损伤后。总共确定了28个推定位点,其中大约一半是DNA依赖性蛋白激酶(DNA-PK)共有位点。开发了定制抗体以确认其中两个位点(Ser-26和Ser-30)的磷酸化。在多种破坏DNA的胁迫后,两个位点通常在细胞FUS的亚群中被磷酸化,但不一定相等或同时发生。重要的是,我们发现FUS病毒样结构域的DNA-PK依赖性多磷酸化不会引起细胞质定位。

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