a State Key Laboratory of Medical Genetics; School of Life Sciences ; Central South University ; Changsha , Hunan , China.
RNA Biol. 2014;11(9):1148-60. doi: 10.4161/rna.36100.
Spinal muscular atrophy (SMA), the most frequent human congenital motor neuron degenerative disease, is caused by loss-of-function mutations in the highly conserved survival motor neuron gene SMN1. Mutations in SMN could affect several molecular processes, among which aberrant pre-mRNA splicing caused by defective snRNP biogenesis is hypothesized as a major cause of SMA. To date little is known about the interactions of SMN with other splicing factor genes and how SMN affects splicing in vivo. The nematode Caenorhabditis elegans carries a single ortholog of SMN, smn-1, and has been used as a model for studying the molecular functions of SMN. We analyzed RNA splicing of reporter genes in an smn-1 deletion mutant and found that smn-1 is required for efficient splicing at weak 3' splice sites. Genetic studies indicate that the defective lifespan and motor functions of the smn-1 deletion mutants could be significantly improved by mutations of the splicing factor U2AF large subunit gene uaf-1. In smn-1 mutants we detected a reduced expression of U1 and U5 snRNAs and an increased expression of U2, U4 and U6 snRNAs. Our study verifies an essential role of smn-1 for RNA splicing in vivo, identifies the uaf-1 gene as a potential genetic modifier of smn-1 mutants, and suggests that SMN-1 has multifaceted effects on the expression of spliceosomal snRNAs.
脊髓性肌萎缩症(SMA)是最常见的人类先天性运动神经元退行性疾病,由高度保守的生存运动神经元基因 SMN1 的功能丧失突变引起。SMN 突变可能会影响多种分子过程,其中由缺陷 snRNP 生物发生引起的异常前体 mRNA 剪接被假设为 SMA 的主要原因。迄今为止,人们对 SMN 与其他剪接因子基因的相互作用以及 SMN 如何在体内影响剪接知之甚少。线虫秀丽隐杆线虫携带一个 SMN 的单一直系同源物,smn-1,并已被用作研究 SMN 分子功能的模型。我们分析了 smn-1 缺失突变体中报告基因的 RNA 剪接,发现 smn-1 是在弱 3' 剪接位点进行有效剪接所必需的。遗传研究表明,通过剪接因子 U2AF 大亚基基因 uaf-1 的突变,smn-1 缺失突变体的缺陷寿命和运动功能可以得到显著改善。在 smn-1 突变体中,我们检测到 U1 和 U5 snRNA 的表达减少,U2、U4 和 U6 snRNA 的表达增加。我们的研究验证了 smn-1 在体内 RNA 剪接中的重要作用,确定了 uaf-1 基因是 smn-1 突变体的潜在遗传修饰因子,并表明 SMN-1 对剪接体 snRNA 的表达有多种影响。