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A cytoplasmic quaking I isoform regulates the hnRNP F/H-dependent alternative splicing pathway in myelinating glia

机译:细胞质的地震我同工型调节有髓胶质细胞的hnRNP F / H依赖的替代剪接途径。

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The selective RNA-binding protein quaking I (QKI) plays important roles in controlling alternative splicing (AS). Three QKI isoforms are broadly expressed, which display distinct nuclear-cytoplasmic distribution. However, molecular mechanisms by which QKI isoforms control AS, especially in distinct cell types, still remain elusive. The quakingviable (qkv) mutant mice carry deficiencies of all QKI isoforms in oligodendrocytes (OLs) and Schwann cells (SWCs), the myelinating glia of central and peripheral nervous system (CNS and PNS), respectively, resulting in severe dysregulation of AS. We found that the cytoplasmic isoform QKI-6 regulates AS of polyguanine (G-run)-containing transcripts in OLs and rescues aberrant AS in the qkv mutant by repressing expression of two canonical splicing factors, heterologous nuclear ribonucleoproteins (hnRNPs) F and H. Moreover, we identified a broad spectrum of in vivo functional hnRNP F/H targets in OLs that contain conserved exons flanked by G-runs, many of which are dysregulated in the qkv mutant. Interestingly, AS targets of the QKI-6-hnRNP F/H pathway in OLs are differentially affected in SWCs, suggesting that additional cell-type-specific factors modulate AS during CNS and PNS myelination. Together, our studies provide the first evidence that cytoplasmic QKI-6 acts upstream of hnRNP F/H, which forms a novel pathway to control AS in myelinating glia.
机译:选择性RNA结合蛋白地震I(QKI)在控制选择性剪接(AS)中起着重要作用。三种QKI亚型被广泛表达,显示出明显的核质分布。然而,QKI异构体控制AS的分子机制,尤其是在不同的细胞类型中,仍然难以捉摸。发生地震的(qk v )突变小鼠携带少突胶质细胞(OLs)和雪旺细胞(SWCs)(中枢神经系统和周围神经系统的有髓神经胶质细胞(CNS和PNS))的所有QKI亚型均缺乏,导致AS严重失调。我们发现,胞质亚型QKI-6调节OLs中含鸟嘌呤(G-run)的转录本的AS,并通过抑制两个典型剪接因子异源核表达来挽救qk v 突变体中的异常AS。核糖核酸蛋白(hnRNPs)F和H。此外,我们在OL中发现了广谱的体内功能性hnRNP F / H靶标,这些靶标中包含保守的外显子,其侧翼是G-runs,其中许多在qk v中失调了突变体。有趣的是,OL中QKI-6-hnRNP F / H途径的AS靶标在SWC中受到不同的影响,表明在CNS和PNS髓鞘形成过程中,其他细胞类型特异性因子可调节AS。总之,我们的研究提供了第一个证据,表明细胞质QKI-6在hnRNP F / H的上游起作用,这形成了控制髓鞘胶质细胞AS的新途径。

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