Tang Z, Yanagida M, Lin R J
Department of Molecular Biology, Beckman Research Institute of the City of Hope, Duarte, California 91010, USA.
J Biol Chem. 1998 Mar 6;273(10):5963-9. doi: 10.1074/jbc.273.10.5963.
Intricate interplay may exist between pre-mRNA splicing and the cell division cycle, and fission yeast Dsk1 appears to play a role in such a connection. Previous genetic analyses have implicated Dsk1 in the regulation of chromosome segregation at the metaphase/anaphase transition. Yet, its protein sequence suggests that Dsk1 may function as a kinase specific for SR proteins, a family of pre-mRNA splicing factors containing arginine-serine repeats. Using an in vitro system with purified components, we showed that Dsk1 phosphorylated human and yeast SR proteins with high specificity. The Dsk1-phosphorylated SF2/ASF protein was recognized strongly by a monoclonal antibody (mAb104) known to bind the in vivo phosphoepitope shared by SR proteins, indicating that the phosphorylation sites resided in the RS domain. Moreover, the fission yeast U2AF65 homolog, Prp2/Mis11 protein, was phosphorylated more efficiently by Dsk1 than by a human SR protein-specific kinase, SRPK1. Thus, these in vitro results suggest that Dsk1 is a fission yeast SR protein-specific kinase, and Prp2/Mis11 is likely an in vivo target for Dsk1. Together with previous genetic data, the studies support the notion that Dsk1 may play a role in coordinating pre-mRNA splicing and the cell division cycle.
前体mRNA剪接与细胞分裂周期之间可能存在复杂的相互作用,而裂殖酵母Dsk1似乎在这种联系中发挥作用。先前的遗传学分析表明Dsk1在中期/后期转换时对染色体分离的调控中起作用。然而,其蛋白质序列表明Dsk1可能作为SR蛋白的特异性激酶发挥作用,SR蛋白是一类含有精氨酸-丝氨酸重复序列的前体mRNA剪接因子。使用含有纯化成分的体外系统,我们表明Dsk1能高度特异性地磷酸化人和酵母的SR蛋白。Dsk1磷酸化的SF2/ASF蛋白能被一种已知可结合SR蛋白体内磷酸化表位的单克隆抗体(mAb104)强烈识别,这表明磷酸化位点位于RS结构域。此外,裂殖酵母U2AF65同源物Prp2/Mis11蛋白被Dsk1磷酸化的效率比被人SR蛋白特异性激酶SRPK1磷酸化的效率更高。因此,这些体外实验结果表明Dsk1是裂殖酵母SR蛋白特异性激酶,并且Prp2/Mis11可能是Dsk1在体内的作用靶点。结合先前的遗传学数据,这些研究支持Dsk1可能在协调前体mRNA剪接和细胞分裂周期中发挥作用这一观点。