Lin Ke, Fu Xiuhu, Wang Lulu, Xiao Sa, Wang Shenxin, Fan Yingjie, An Xinyu, Boon Kum-Loong, Bao Penghui
Institute of Molecular Enzymology, School of Life Sciences, Suzhou Medical College of Soochow University, Suzhou 215123, China.
Int J Mol Sci. 2025 Jun 6;26(12):5440. doi: 10.3390/ijms26125440.
While the U1 small nuclear ribonucleoprotein (snRNP) plays a crucial role in early spliceosome assembly, the mechanisms by which it coordinates with other splicing factors for efficient assembly remain elusive. This study aimed to examine the role of the Swt21 protein in regulating U1 snRNP in . Swt21p was required for efficient pre-mRNA splicing both in vivo and in vitro. Deletion of altered the splicing patterns of two-intron RNA, causing intron retention and exon skipping. Spliceosome assembly analysis revealed that in the pre-B complex, the levels of U1 protein components, as well as U1 RNA, were decreased following deletion, highlighting the compromised stability of U1 snRNP during this stage. Consistently, in the absence of Swt21p, free isoform of U1 component Nam8p was observed, and its proper nuclear localization was disrupted, demonstrating the functional importance of Swp21p for the stable association of Nam8p with U1 snRNP. Moreover, Swt21p remained primarily in a free state under physiological conditions and did not associate with the pre-B complex. Additionally, TAP analysis revealed that Swt21p-associated proteins are involved in cellular processes beyond splicing. These findings collectively indicate that Swt21p functions as a spliceosome regulator rather than a core component and support a model wherein Swt21p contributes to U1 snRNP stability during early spliceosome assembly.
虽然U1小核核糖核蛋白(snRNP)在早期剪接体组装中起关键作用,但其与其他剪接因子协同进行高效组装的机制仍不清楚。本研究旨在探讨Swt21蛋白在调节U1 snRNP中的作用。Swt21p在体内和体外对于有效的前体mRNA剪接都是必需的。缺失Swt21p会改变双内含子RNA的剪接模式,导致内含子保留和外显子跳跃。剪接体组装分析显示,在B前体复合物中,缺失Swt21p后,U1蛋白成分以及U1 RNA的水平均降低,这突出了此阶段U1 snRNP稳定性受损。一致地,在没有Swt21p的情况下,观察到U1成分Nam8p的游离异构体,并且其正确的核定位被破坏,这证明了Swp21p对于Nam8p与U1 snRNP稳定结合的功能重要性。此外,Swt21p在生理条件下主要保持游离状态,不与B前体复合物结合。另外,TAP分析显示,与Swt21p相关的蛋白参与了剪接以外的细胞过程。这些发现共同表明,Swt21p作为剪接体调节剂而非核心成分发挥作用,并支持一种模型,即Swt21p在早期剪接体组装过程中有助于U1 snRNP的稳定性。