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Regulation of Alternative Splicing by SRrp86 and Its Interacting Proteins

机译:SRrp86及其相互作用蛋白对选择性剪接的调控

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摘要

SRrp86 is a unique member of the SR protein superfamily containing one RNA recognition motif and two serine-arginine (SR)-rich domains separated by an unusual glutamic acid-lysine (EK)-rich region. Previously, we showed that SRrp86 could regulate alternative splicing by both positively and negatively modulating the activity of other SR proteins and that the unique EK domain could inhibit both constitutive and alternative splicing. These functions were most consistent with the model in which SRrp86 functions by interacting with and thereby modulating the activity of target proteins. To identify the specific proteins that interact with SRrp86, we used a yeast two-hybrid library screen and immunoprecipitation coupled to mass spectrometry. We show that SRrp86 interacts with all of the core SR proteins, as well as a subset of other splicing regulatory proteins, including SAF-B, hnRNP G, YB-1, and p72. In contrast to previous results that showed activation of SRp20 by SRrp86, we now show that SAF-B, hnRNP G, and 9G8 all antagonize the activity of SRrp86. Overall, we conclude that not only does SRrp86 regulate SR protein activity but that it is, in turn, regulated by other splicing factors to control alternative splice site selection.
机译:SRrp86是SR蛋白超家族的独特成员,包含一个RNA识别基序和两个富含丝氨酸精氨酸(SR)的结构域,这些结构域由一个不常见的富含谷氨酸-赖氨酸(EK)的区域隔开。以前,我们表明SRrp86可以通过正向和负向调节其他SR蛋白的活性来调节替代剪接,并且独特的EK结构域可以抑制组成性剪接和替代剪接。这些功能与其中SRrp86通过与靶蛋白相互作用从而调节其活性而起作用的模型最一致。为了鉴定与SRrp86相互作用的特定蛋白质,我们使用了酵母双杂交文库筛选和免疫沉淀与质谱联用。我们显示,SRrp86与所有核心SR蛋白以及其他剪接调节蛋白的子集相互作用,包括SAF-B,hnRNP G,YB-1和p72。与以前的结果表明SRrp86激活SRp20相比,我们现在表明SAF-B,hnRNP G和9G8都拮抗SRrp86的活性。总的来说,我们得出的结论是,SRrp86不仅调节SR蛋白的活性,而且还受到其他剪接因子的调控,以控制其他剪接位点的选择。

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