Jiangsu Key Laboratory for Molecular and Medical Biotechnology, College of Life Sciences, Nanjing Normal University, NanJing, China.
Department of Rehabilitation, Southwest Hospital, Third Military Medical University Army Medical University, Chongqing, China.
PeerJ. 2023 Sep 18;11:e16103. doi: 10.7717/peerj.16103. eCollection 2023.
Serine/arginine-rich (SR) proteins regulate pre-mRNA splicing. However, structurally similar proteins often behave differently in splicing regulation and the underlying mechanisms are largely unknown. Here, using minigenes we extensively analyzed four SR proteins, SRSF1/5/6/9.
In this study, the effects of these proteins on exon 7 splicing when tethered at either intron 6 or 7 were evaluated using an MS2-tethering assay. Deletion analysis in four SR proteins and co-overexpression analysis were performed.
Splicing outcomes varied among all four SR proteins, SRSF1 and SRSF5 function the same at the two sites, acting as repressor and stimulator, respectively; while SRSF6 and SRSF9 promote exon 7 inclusion at only one site. Further, the key domains of each SR proteins were investigated, which identified a potent inhibitory nonapeptide in the C-terminus of SRSF1/9 ribonucleic acid recognition motif-1 (RRM1) and a potent stimulatory heptapeptide at the N-terminus of SRSF5/6 RRM1.
The insight of the four SR proteins and their domains in affecting gene splicing brings a new perspective on the modes of action of SR proteins; and the functional peptides obtained here offers new ideas for developing splice switching-related therapies.
丝氨酸/精氨酸丰富(SR)蛋白调节前体 mRNA 的剪接。然而,结构相似的蛋白在剪接调控中的表现往往不同,其潜在机制在很大程度上尚不清楚。在这里,我们使用 minigenes 广泛分析了四个 SR 蛋白,SRSF1/5/6/9。
在这项研究中,使用 MS2 tethering assay 评估了这些蛋白在分别位于内含子 6 或 7 时对第 7 外显子剪接的影响。对四个 SR 蛋白进行缺失分析和共过表达分析。
所有四个 SR 蛋白的剪接结果都不同,SRSF1 和 SRSF5 在两个位点的功能相同,分别作为抑制剂和刺激物;而 SRSF6 和 SRSF9 仅在一个位点促进第 7 外显子的包含。此外,还研究了每个 SR 蛋白的关键结构域,鉴定了 SRSF1/9 RNA 识别基序-1(RRM1)的 C 末端具有强抑制性的九肽和 SRSF5/6 RRM1 的 N 末端具有强刺激作用的七肽。
这四个 SR 蛋白及其结构域在影响基因剪接方面的见解为 SR 蛋白的作用模式提供了新的视角;并且这里获得的功能肽为开发剪接转换相关治疗方法提供了新的思路。