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The splicing regulator Sam68 binds to a novel exonic splicing silencer and functions in SMN2 alternative splicing in spinal muscular atrophy

机译:剪接调节因子Sam68与新型外显子剪接沉默子结合,并在脊髓肌萎缩症的SMN2选择性剪接中发挥作用

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摘要

Spinal muscular atrophy (SMA) is a neurodegenerative disease caused by loss of motor neurons in patients with null mutations in the SMN1 gene. An almost identical SMN2 gene is unable to compensate for this deficiency because a single C-to-T transition at position +6 in exon-7 causes skipping of the exon by a mechanism not yet fully elucidated. We observed that the C-to-T transition in SMN2 creates a putative binding site for the RNA-binding protein Sam68. RNA pull-down assays and UV-crosslink experiments showed that Sam68 binds to this sequence. In vivo splicing assays showed that Sam68 triggers SMN2 exon-7 skipping. Moreover, mutations in the Sam68-binding site of SMN2 or in the RNA-binding domain of Sam68 completely abrogated its effect on exon-7 skipping. Retroviral infection of dominant-negative mutants of Sam68 that interfere with its RNA-binding activity, or with its binding to the splicing repressor hnRNP A1, enhanced exon-7 inclusion in endogenous SMN2 and rescued SMN protein expression in fibroblasts of SMA patients. Our results thus indicate that Sam68 is a novel crucial regulator of SMN2 splicing.
机译:脊髓性肌萎缩症(SMA)是由SMN1基因无效突变的患者的运动神经元丢失引起的神经退行性疾病。几乎相同的SMN2基因无法弥补这一缺陷,因为外显子7中+6位的单C-T跃迁导致外显子被一种尚未完全阐明的机制跳过。我们观察到SMN2中的C到T过渡为RNA结合蛋白Sam68创建了一个假定的结合位点。 RNA下拉测定法和UV交联实验表明Sam68与该序列结合。体内剪接试验表明,Sam68触发SMN2外显子7跳跃。此外,SMN2的Sam68结合位点或Sam68的RNA结合域中的突变完全消除了其对外显子7跳跃的影响。 Sam68显性阴性突变体的逆转录病毒感染会干扰其RNA结合活性或与剪接阻遏物hnRNP A1的结合,增强内源SMN2中外显子7的内含性,并拯救SMA患者成纤维细胞中SMN蛋白的表达。因此,我们的结果表明,Sam68是SMN2剪接的新型关键调控因子。

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