Blatnik Anton J, Sanjeev Manu, Slivka Jacob, Pastore Benjamin, Embree Caleb M, Tang Wen, Singh Guramrit, Burghes Arthur H M
Department of Biological Chemistry and Pharmacology, The Ohio State University Wexner Medical Center, 395 W. 12th Ave, Columbus, OH 43210, United States.
Department of Molecular Genetics, The Ohio State University, 484 West 12th Avenue, Columbus, OH 43210, United States.
Nucleic Acids Res. 2025 Aug 11;53(15). doi: 10.1093/nar/gkaf794.
Sm-ring assembly is important for the biogenesis, stability, and function of uridine-rich small nuclear RNAs (U snRNAs) involved in pre-messenger RNA (mRNA) splicing and histone pre-mRNA processing. Sm-ring assembly is cytoplasmic and dependent upon the Sm-site sequence and structural motif, ATP, and Survival motor neuron (SMN) protein complex. While RNAs other than U snRNAs were previously shown to associate with Sm proteins, whether this association follows Sm-ring assembly requirements is unknown. We systematically identified Sm-sites within the human and mouse transcriptomes and assessed whether these sites can accept Sm-rings. In addition to snRNAs, Sm-sites are highly prevalent in the 3' untranslated regions of long mRNAs. RNA immunoprecipitation experiments confirm that Sm-site containing mRNAs associate with Sm proteins in the cytoplasm. In modified Sm-ring assembly assays, Sm-site containing mRNAs, specifically associate with Sm proteins in an Sm-site, SMN, and ATP-dependent manner. In cell and animal models of Spinal Muscular Atrophy (SMA), mRNAs containing Sm-sites are downregulated, suggesting reduced Sm-ring assembly on these mRNAs may contribute to SMA pathogenesis. Together, this study establishes that Sm-site containing mRNAs can accept Sm-rings and identifies a novel mechanism for Sm proteins in regulation of cytoplasmic mRNAs.
Sm环组装对于参与信使核糖核酸前体(mRNA)剪接和组蛋白前体mRNA加工的富含尿苷的小核RNA(U snRNA)的生物合成、稳定性及功能至关重要。Sm环组装发生在细胞质中,依赖于Sm位点序列和结构基序、ATP以及生存运动神经元(SMN)蛋白复合体。虽然此前已表明除U snRNA外的其他RNA可与Sm蛋白结合,但这种结合是否遵循Sm环组装要求尚不清楚。我们系统地鉴定了人类和小鼠转录组中的Sm位点,并评估这些位点是否能接纳Sm环。除了snRNA外,Sm位点在长mRNA的3'非翻译区中高度普遍。RNA免疫沉淀实验证实,含有Sm位点的mRNA在细胞质中与Sm蛋白结合。在改良的Sm环组装实验中,含有Sm位点的mRNA以Sm位点、SMN和ATP依赖的方式特异性地与Sm蛋白结合。在脊髓性肌萎缩症(SMA)的细胞和动物模型中,含有Sm位点的mRNA表达下调,这表明这些mRNA上Sm环组装减少可能导致SMA发病机制。总之,本研究证实含有Sm位点的mRNA能接纳Sm环,并确定了Sm蛋白调控细胞质mRNA的一种新机制。