Department of Medical Genetics, Capital Institute of Pediatrics, Room 521, Research Building, No. 2 YaBao Road, ChaoYang District, Beijing, 100020, China.
J Mol Neurosci. 2021 Jan;71(1):112-121. doi: 10.1007/s12031-020-01631-7. Epub 2020 Aug 18.
Spinal muscular atrophy (SMA) is an autosomal recessive neuromuscular disorder caused by deletion or subtle variant of survival motor neuron 1 (SMN1) gene. By multiplex ligation-dependent probe amplification, genomic sequencing, and T-A cloning on cDNA level, we identified one novel SMN1 subtle variant c.835G>C (p.Gly279Arg) in a non-homozygous patient with type 1 SMA. Full-length SMN1 (fl-SMN1) transcripts in the peripheral bloods of the patient were significantly decreased compared with those in healthy individuals and the carries (p < 0.05). And two fragments of SMN1 transcripts including fl-SMN1 and △7-SMN1 were observed by RT-PCR, which indicated Exon 7 skipping of SMN1 gene. To further evaluate its splicing effects on Exon 7, we performed ex vivo splicing analysis, which showed that the mutant mini gene with c.835G>C reduced Exon 7 inclusion to 54%. In addition, self-oligomerization between mutant SMN protein with the c.835G>C (p.Gly279Arg) and wild SMN was decreased in self-interaction assays. Our study clearly demonstrates that the c.835G>C (p.Gly279Arg) variant can lead to a decrease in fl-SMN1 transcripts by interrupting correct splicing of SMN1. What is more, the variant also affects SMN self-oligomerization via amino acid substitution from Gly to Arg at amino acid position of 279. This work presents the first evidence that it does exit double-hit events for the novel variant, which is crucial to understanding a severe SMA phenotype (type 1).
脊髓性肌萎缩症(SMA)是一种常染色体隐性神经肌肉疾病,由生存运动神经元 1(SMN1)基因缺失或微小变异引起。通过多重连接依赖性探针扩增、基因组测序和 cDNA 水平的 T-A 克隆,我们在 1 型 SMA 非纯合患者中鉴定出一种新的 SMN1 微小变异 c.835G>C(p.Gly279Arg)。与健康个体和携带者相比,患者外周血中的全长 SMN1(fl-SMN1)转录本明显减少(p<0.05)。通过 RT-PCR 观察到包括 fl-SMN1 和 △7-SMN1 在内的两个 SMN1 转录本片段,表明 SMN1 基因外显子 7 跳跃。为了进一步评估其对 Exon 7 的剪接作用,我们进行了体外剪接分析,结果表明,具有 c.835G>C 的突变 mini 基因使 Exon 7 包含减少到 54%。此外,在自我相互作用测定中,具有 c.835G>C(p.Gly279Arg)的突变 SMN 蛋白与野生型 SMN 之间的自我寡聚作用降低。我们的研究清楚地表明,c.835G>C(p.Gly279Arg)变异可以通过中断 SMN1 的正确剪接导致 fl-SMN1 转录本减少。更重要的是,该变异还通过在氨基酸位置 279 从甘氨酸到精氨酸的氨基酸取代影响 SMN 自我寡聚化。这项工作首次证明该新型变异存在双重打击事件,这对于理解严重 SMA 表型(1 型)至关重要。