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Role of the modular domains of SR proteins in subnuclear localization and alternative splicing specificity

机译:SR蛋白的模块结构域在亚核定位和选择性剪接特异性中的作用

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摘要

SR proteins are required for constitutive pre-mRNA splicing and also regulate alternative splice site selection in a concentration-dependent manner. They have a modular structure that consists of one or two RNA-recognition motifs (RRMs) and a COOH-terminal arginine/serine-rich domain (RS domain). We have analyzed the role of the individual domains of these closely related proteins in cellular distribution, subnuclear localization, and regulation of alternative splicing in vivo. We observed striking differences in the localization signals present in several human SR proteins. In contrast to earlier studies of RS domains in the Drosophila suppressor-of-white-apricot (SWAP) and Transformer (Tra) alternative splicing factors, we found that the RS domain of SF2/ASF is neither necessary nor sufficient for targeting to the nuclear speckles. Although this RS domain is a nuclear localization signal, subnuclear targeting to the speckles requires at least two of the three constituent domains of SF2/ASF, which contain additive and redundant signals. In contrast, in two SR proteins that have a single RRM (SC35 and SRp20), the RS domain is both necessary and sufficient as a targeting signal to the speckles. We also show that RRM2 of SF2/ASF plays an important role in alternative splicing specificity: deletion of this domain results in a protein that, although active in alternative splicing, has altered specificity in 5' splice site selection. These results demonstrate the modularity of SR proteins and the importance of individual domains for their cellular localization and alternative splicing function in vivo.
机译:SR蛋白是组成性pre-mRNA剪接所必需的,并且还以浓度依赖的方式调节替代剪接位点的选择。它们具有由一个或两个RNA识别基序(RRM)和一个COOH末端精氨酸/富含丝氨酸的结构域(RS结构域)组成的模块化结构。我们已经分析了这些密切相关的蛋白质的各个域在细胞分布,亚核定位和体内选择性剪接调控中的作用。我们观察到了几种人类SR蛋白中存在的定位信号的显着差异。与果蝇白蛋白抑制子(SWAP)和Transformer(Tra)选择性剪接因子中RS结构域的早期研究相比,我们发现SF2 / ASF的RS结构域既不需要也不足以靶向核分子。斑点。尽管此RS域是核定位信号,但针对斑点的亚核目标需要SF2 / ASF的三个组成域中的至少两个,其中包含加性信号和冗余信号。相反,在具有单个RRM的两个SR蛋白(SC35和SRp20)中,RS结构域既是必需的又是足够的斑点信号。我们还显示,SF2 / ASF的RRM2在替代剪接特异性中起着重要作用:该结构域的缺失会产生一种蛋白质,该蛋白质尽管在替代剪接中具有活性,但在5'剪接位点选择中已改变了特异性。这些结果证明了SR蛋白的模块性以及单个域对其体内细胞定位和替代剪接功能的重要性。

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