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ALS-causative mutations in FUS/TLS confer gain and loss of function by altered association with SMN and U1-snRNP

机译:FUS / TLS中的ALS致病性突变通过与SMN和U1-snRNP的关联改变而导致功能的获得和丧失

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The RNA-binding protein FUS / TLS , mutation in which is causative of the fatal motor neuron disease amyotrophic lateral sclerosis (ALS), is demonstrated to directly bind to the U1-snRNP and SMN complexes. ALS-causative mutations in FUS / TLS are shown to abnormally enhance their interaction with SMN and dysregulate its function, including loss of Gems and altered levels of small nuclear RNAs. The same mutants are found to have reduced association with U1-snRNP. Correspondingly, global RNA analysis reveals a mutant-dependent loss of splicing activity, with ALS-linked mutants failing to reverse changes caused by loss of wild-type FUS / TLS . Furthermore, a common FUS / TLS mutant-associated RNA splicing signature is identified in ALS patient fibroblasts. Taken together, these studies establish potentially converging disease mechanisms in ALS and spinal muscular atrophy, with ALS-causative mutants acquiring properties representing both gain (dysregulation of SMN ) and loss (reduced RNA processing mediated by U1-snRNP) of function.
机译:RNA结合蛋白FUS / TLS突变是致命运动神经元疾病肌萎缩性侧索硬化症(ALS)的病因,已证明直接结合U1-snRNP和SMN复合物。 FUS / TLS中由ALS引起的突变显示出异常增强了它们与SMN的相互作用,并异常调节了其功能,包括失去了宝石和改变了小核RNA的水平。发现相同的突变体与U1-snRNP的结合减少。相应地,全局RNA分析揭示了突变体依赖的剪接活性丧失,而与ALS相关的突变体未能逆转由野生型FUS / TLS丧失引起的变化。此外,在ALS患者的成纤维细胞中鉴定了常见的FUS / TLS突变体相关的RNA剪接特征。综上所述,这些研究建立了ALS和脊髓性肌萎缩症的潜在趋同疾病机制,而ALS致病突变体获得的特性既代表功能的获得(SMN失调)又代表失去功能(由U1-snRNP介导的RNA加工减少)。

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