Park Eonyoung, Han Jin, Son Gi Hoon, Lee Mi Sun, Chung Sooyoung, Park Sung Ho, Park Kyungsook, Lee Kun Ho, Choi Sukwoo, Seong Jae Young, Kim Kyungjin
School of Biological Sciences, Seoul National University, Seoul 151-742, Korea.
J Biol Chem. 2006 Jan 6;281(1):401-9. doi: 10.1074/jbc.M505814200. Epub 2005 Oct 25.
In earlier studies, we demonstrated that excision of the first intron (intron A) from the gonadotropin-releasing hormone (GnRH) transcript is highly cell type- and developmental stage-specific. The removal of GnRH intron A requires exonic splicing enhancers on exons 3 and 4 (ESE3 and ESE4, respectively). Tra2alpha,a serine/arginine-rich (SR)-like protein, specifically binds to ESE4, although it requires additional nuclear co-factors for efficient removal of this intron. In the present study, we demonstrate the cooperative action of multiple SR proteins in the regulation of GnRH pre-mRNA splicing. SRp30c specifically binds to both ESE3 and ESE4, whereas 9G8 binds to an element in exon 3 and strongly enhances the excision of GnRH intron A in the presence of minimal amount of other nuclear components. Interestingly, Tra2alpha can interact with either 9G8 or SRp30c, whereas no interaction between 9G8 and SRp30c is observed. Tra2alpha has an additive effect on the RNA binding of these proteins. Overexpression or knock-down of these three proteins in cultured cells further suggests their essential role in intron A excision activities, and their presence in GnRH neurons of the mouse preoptic area further strengthens this possibility. Together, these results indicate that interaction of Tra2alpha with 9G8 and SRp30c appears to be crucial for ESE-dependent GnRH pre-mRNA splicing, allowing efficient generation of mature mRNA in GnRH-producing cells.
在早期研究中,我们证明从促性腺激素释放激素(GnRH)转录本中切除第一个内含子(内含子A)具有高度的细胞类型和发育阶段特异性。切除GnRH内含子A需要外显子3和4上的外显子剪接增强子(分别为ESE3和ESE4)。Tra2alpha是一种富含丝氨酸/精氨酸(SR)的类似蛋白,它特异性结合ESE4,不过它需要额外的核辅因子才能有效切除该内含子。在本研究中,我们证明了多种SR蛋白在GnRH前体mRNA剪接调控中的协同作用。SRp30c特异性结合ESE3和ESE4,而9G8结合外显子3中的一个元件,并在存在少量其他核成分的情况下强烈增强GnRH内含子A的切除。有趣的是,Tra2alpha可以与9G8或SRp30c相互作用,而未观察到9G8和SRp30c之间的相互作用。Tra2alpha对这些蛋白的RNA结合具有累加效应。在培养细胞中过表达或敲低这三种蛋白进一步表明它们在内含子A切除活性中的重要作用,并且它们在小鼠视前区GnRH神经元中的存在进一步强化了这种可能性。总之,这些结果表明Tra2alpha与9G8和SRp30c的相互作用似乎对ESE依赖的GnRH前体mRNA剪接至关重要,从而使GnRH产生细胞中能够高效生成成熟mRNA。