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FUBP1: a new protagonist in splicing regulation of the DMD gene

机译:FUBP1:DMD基因剪接调节的新主角

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We investigated the molecular mechanisms for in-frame skipping of DMD exon 39 caused by the nonsense c. 5480T>A mutation in a patient with Becker muscular dystrophy. RNase-assisted pull down assay coupled with mass spectrometry revealed that themutant RNA probe specifically recruits hnRNPA1, hnRNPA2/B1 and DAZAP1. Functional studies in a human myoblast cell line transfected with DMD minigenes confirmed the splicing inhibitory activity of hnRNPA1 and hnRNPA2/B1, and showed that DAZAP1, also known to activate splicing, acts negatively in the context of the mutated exon 39. Furthermore, we uncovered that recognition of endogenous DMD exon 39 in muscle cells is promoted by FUSE binding protein 1 (FUBP1), a multifunctional DNA-and RNA-binding protein whose role in splicing is largely unknown. By serial deletion and mutagenesis studies in minigenes, we delineated a functional intronic splicing enhancer (ISE) in intron 38. FUBP1 recruitment to the RNA sequence containing the ISE was established by RNA pull down and RNA EMSA, and further confirmed by RNA-ChIP on endogenous-DMD pre-mRNA. This study provides new insights about the splicing regulation of DMD exon 39, highlighting the emerging role of FUBP1 in splicing and describing the first ISE for constitutive exon inclusion in the mature DMD transcript.
机译:我们研究了由废话C引起的DMD外显子39的框架内跳过的分子机制。 5480t>患者患者患有Becker肌肉营养不良的突变。 RNase辅助拉压测定与质谱相结合,表明,小型RNA探针特别招募HNRNPA1,HNRNPA2 / B1和Dazap1。用DMD小核转染的人肌细胞细胞系中的功能性研究证实了HNRNPA1和HNRNPA2 / B1的剪接抑制活性,并且表明,在突变的外显子39的背景下,Dazap1也称为激活剪接。此外,我们发现了肌肉细胞中内源性DMD外显子39的识别由熔丝结合蛋白1(FUBP1),多官能DNA和RNA结合蛋白促进,其在剪接的作用主要是未知的。通过在稀土烯中进行连续缺失和诱变研究,我们描绘了内含子38中的功能性内含性含有内肠剪接增强剂(ISE)。FUBP1募集含有ISE的RNA序列的RNA下拉和RNA EMSA,并通过RNA芯片进一步证实内源性-DMD前mRNA。本研究为DMD外显子39的拼接调节提供了新的见解,突出了FUBP1在剪接中的出现作用,并描述了成熟DMD转录物中的第一个ISE用于组成型外显子夹杂物。

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