Misteli T, Cáceres J F, Clement J Q, Krainer A R, Wilkinson M F, Spector D L
Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.
J Cell Biol. 1998 Oct 19;143(2):297-307. doi: 10.1083/jcb.143.2.297.
Expression of most RNA polymerase II transcripts requires the coordinated execution of transcription, splicing, and 3' processing. We have previously shown that upon transcriptional activation of a gene in vivo, pre-mRNA splicing factors are recruited from nuclear speckles, in which they are concentrated, to sites of transcription (Misteli, T., J.F. Cáceres, and D.L. Spector. 1997. Nature. 387:523-527). This recruitment process appears to spatially coordinate transcription and pre-mRNA splicing within the cell nucleus. Here we have investigated the molecular basis for recruitment by analyzing the recruitment properties of mutant splicing factors. We show that multiple protein domains are required for efficient recruitment of SR proteins from nuclear speckles to nascent RNA. The two types of modular domains found in the splicing factor SF2/ ASF exert distinct functions in this process. In living cells, the RS domain functions in the dissociation of the protein from speckles, and phosphorylation of serine residues in the RS domain is a prerequisite for this event. The RNA binding domains play a role in the association of splicing factors with the target RNA. These observations identify a novel in vivo role for the RS domain of SR proteins and suggest a model in which protein phosphorylation is instrumental for the recruitment of these proteins to active sites of transcription in vivo.
大多数RNA聚合酶II转录本的表达需要转录、剪接和3'加工的协同执行。我们之前已经表明,在体内基因转录激活时,前体mRNA剪接因子从它们聚集的核斑点被招募到转录位点(米斯特利,T.,J.F.卡塞雷斯,和D.L.斯佩克特。1997年。《自然》。387:523 - 527)。这个招募过程似乎在细胞核内对转录和前体mRNA剪接进行空间协调。在这里,我们通过分析突变剪接因子的招募特性来研究招募的分子基础。我们表明,从核斑点向新生RNA有效招募SR蛋白需要多个蛋白质结构域。剪接因子SF2/ASF中发现的两种类型的模块化结构域在此过程中发挥不同的功能。在活细胞中,RS结构域在蛋白质从斑点解离中起作用,并且RS结构域中丝氨酸残基的磷酸化是此事件的先决条件。RNA结合结构域在剪接因子与靶RNA的结合中起作用。这些观察结果确定了SR蛋白的RS结构域在体内的一种新作用,并提出了一个模型,其中蛋白质磷酸化有助于这些蛋白质在体内被招募到转录活性位点。