Tacke R, Manley J L
Department of Biological Sciences, Columbia University, New York, NY 10027, USA.
EMBO J. 1995 Jul 17;14(14):3540-51. doi: 10.1002/j.1460-2075.1995.tb07360.x.
ASF/SF2 and SC35 belong to a highly conserved family of nuclear proteins that are both essential for splicing of pre-mRNA in vitro and are able to influence selection of alternative splice sites. An important question is whether these proteins display distinct RNA binding specificities and, if so, whether this influences their functional interactions with pre-mRNA. To address these issues, we first performed selection/amplification from pools of random RNA sequences (SELEX) with portions of the two proteins comprising the RNA binding domains (RBDs). Although both molecules selected mainly purine-rich sequences, comparison of individual sequences indicated that the motifs recognized are different. Binding assays performed with the full-length proteins confirmed that ASF/SF2 and SC35 indeed have distinct specificities, and at the same time provided evidence that the highly charged arginine-serine region of each protein is not a major determinant of specificity. In the case of ASF/SF2, evidence is presented that binding specificity involves cooperation between the protein's two RBDs. Finally, we demonstrate that an element containing three copies of a high-affinity ASF/SF2 binding site constitutes a powerful splicing enhancer. In contrast, a similar element consisting of three SC35 sites was inactive. The ASF/SF2 enhancer can be activated specifically in splicing-deficient S100 extracts by recombinant ASF/SF2 in conjunction with one or more additional protein factors. These and other results suggest a central role for ASF/SF2 in the function of purine-rich splicing enhancers.
ASF/SF2和SC35属于一个高度保守的核蛋白家族,它们对于前体mRNA的体外剪接都是必需的,并且能够影响可变剪接位点的选择。一个重要的问题是这些蛋白是否表现出不同的RNA结合特异性,如果是,这是否会影响它们与前体mRNA的功能相互作用。为了解决这些问题,我们首先用包含RNA结合结构域(RBD)的两种蛋白的部分片段,从随机RNA序列库中进行筛选/扩增(SELEX)。尽管两个分子主要选择富含嘌呤的序列,但对单个序列的比较表明识别的基序是不同的。用全长蛋白进行的结合试验证实,ASF/SF2和SC35确实具有不同的特异性,同时提供了证据表明每种蛋白的高电荷精氨酸-丝氨酸区域不是特异性的主要决定因素。就ASF/SF2而言,有证据表明结合特异性涉及该蛋白两个RBD之间的协同作用。最后,我们证明一个包含三个高亲和力ASF/SF2结合位点拷贝的元件构成了一个强大的剪接增强子。相反,一个由三个SC35位点组成的类似元件是无活性的。ASF/SF2增强子可以在剪接缺陷的S100提取物中,通过重组ASF/SF2与一种或多种其他蛋白因子一起被特异性激活。这些以及其他结果表明ASF/SF2在富含嘌呤的剪接增强子的功能中起核心作用。