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All three RNA recognition motifs and the hinge region of HuC play distinct roles in the regulation of alternative splicing

机译:这三个RNA识别基序和HuC的铰链区在调控选择性剪接中发挥着不同的作用

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The four Hu [embryonic lethal abnormal vision-like (ELAVL)] protein family members regulate alternative splicing by binding to U-rich sequences surrounding target exons and affecting the interaction of the splicing machinery and/or local chromatin modifications. Each of the Hu proteins contains a divergent N-terminus, three highly conserved RNA recognition motifs (RRM1, RRM2 and RRM3) and a hinge region separating RRM2 and RRM3. The roles of each domain in splicing regulation are not well understood. Here, we investigate how HuC, a relatively poorly characterized family member, regulates three target pre-mRNAs: neurofibromatosis type I, Fas and HuD. We find that the HuC N-terminus is dispensable for splicing regulation, and the three RRMs are required for splicing regulation of each target, whereas the hinge region contributes to regulation of only some targets. Interestingly, the regions of the hinge and RRM3 required for regulating different targets only partially overlap, implying substrate-specific mechanisms of HuC-mediated splicing regulation. We show that RRM1 and RRM2 are required for binding to target pre-mRNAs, whereas the hinge and RRM3 are required for HuC-HuC self-interaction. Finally, we find that the portions of RRM3 required for HuC-HuC interaction overlap with those required for splicing regulation of all three targets, suggesting a role of HuC-HuC interaction in splicing regulation.
机译:四个Hu [胚胎致死性异常视觉样像(ELAVL)]蛋白家族成员通过与靶标外显子周围的U富集序列结合并影响剪接机制和/或局部染色质修饰的相互作用来调节替代剪接。每个Hu蛋白都包含一个不同的N端,三个高度保守的RNA识别基序(RRM1​​,RRM2和RRM3)和一个将RRM2和RRM3分开的铰链区。尚不清楚每个域在剪接调控中的作用。在这里,我们调查了特性相对较差的家庭成员HuC如何调节三个目标前mRNA:I型神经纤维瘤病,Fas和HuD。我们发现,HuC N末端对于剪接调控是必不可少的,每个目标的剪接调控需要三个RRM,而铰链区仅对某些靶标起作用。有趣的是,调节不同靶标所需的铰链和RRM3区域仅部分重叠,这暗示了HuC介导的剪接调节的底物特异性机制。我们显示RRM1和RRM2是绑定到目标前mRNA所需的,而铰链和RRM3是HuC-HuC自相互作用所需的。最后,我们发现,HuC-HuC相互作用所需的RRM3部分与所有三个靶标的剪接调控所需的部分重叠,表明HuC-HuC相互作用在剪接调控中的作用。

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