Department of Cell Biology and Anatomy, The Chicago Medical School, Rosalind Franklin University of Medicine and Science, North Chicago, IL 60064, USA.
Hum Mol Genet. 2010 Dec 15;19(24):4906-17. doi: 10.1093/hmg/ddq425. Epub 2010 Sep 30.
Spinal muscular atrophy (SMA) is a neurological disorder characterized by motor neuron degeneration and progressive muscle paralysis. The disease is caused by a reduction in survival of motor neuron (SMN) protein resulting from homozygous deletion of the SMN1 gene. SMN protein is also encoded by SMN2. However, splicing of SMN2 exon 7 is defective, and consequently, the majority of the transcripts produce a truncated, unstable protein. SMN protein itself has a role in splicing. The protein is required for the biogenesis of spliceosomal snRNPs, which are essential components of the splicing reaction. We now show that SMN protein abundance affects the splicing of SMN2 exon 7, revealing a feedback loop inSMN expression. The reduced SMN protein concentration observed in SMA samples and in cells depleted of SMN correlates with a decrease in cellular snRNA levels and a decrease in SMN2 exon 7 splicing. Furthermore, altering the relative abundance or activity of individual snRNPs has distinct effects on exon 7 splicing, demonstrating that core spliceosomal snRNPs influence SMN2 alternative splicing. Our results identify a feedback loop in SMN expression by which low SMN protein levels exacerbate SMN exon 7 skipping, leading to a further reduction in SMN protein. These results imply that a modest increase in SMN protein abundance may cause a disproportionately large increase in SMN expression, a finding that is important for assessing the therapeutic potential of SMA treatments and understanding disease pathogenesis.
脊髓性肌萎缩症(SMA)是一种神经退行性疾病,其特征是运动神经元退化和进行性肌肉麻痹。该疾病是由于运动神经元存活基因(SMN1)基因的纯合缺失导致 SMN 蛋白存活减少引起的。SMN 蛋白也由 SMN2 编码。然而,SMN2 外显子 7 的剪接存在缺陷,因此大多数转录本产生截短的、不稳定的蛋白。SMN 蛋白本身在剪接中具有作用。该蛋白是剪接体 snRNP 生物发生所必需的,snRNP 是剪接反应的必需组成部分。我们现在表明,SMN 蛋白丰度影响 SMN2 外显子 7 的剪接,揭示了 SMN 表达中的反馈回路。在 SMA 样本和耗尽 SMN 的细胞中观察到的 SMN 蛋白浓度降低与细胞 snRNA 水平降低和 SMN2 外显子 7 剪接减少相关。此外,改变单个 snRNP 的相对丰度或活性对外显子 7 剪接具有不同的影响,表明核心剪接体 snRNP 影响 SMN2 可变剪接。我们的结果确定了 SMN 表达的反馈回路,其中低 SMN 蛋白水平加剧了 SMN 外显子 7 的跳跃,导致 SMN 蛋白进一步减少。这些结果表明,SMN 蛋白丰度的适度增加可能导致 SMN 表达不成比例地增加,这对于评估 SMA 治疗的治疗潜力和理解疾病发病机制非常重要。