首页> 外文期刊>Nucleic Acids Research >FRAXE-associated mental retardation protein (FMR2) is an RNA-binding protein with high affinity for G-quartet RNA forming structure
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FRAXE-associated mental retardation protein (FMR2) is an RNA-binding protein with high affinity for G-quartet RNA forming structure

机译:FRAXE相关的智力低下蛋白(FMR2)是一种对G四重核RNA形成结构具有高亲和力的RNA结合蛋白

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FRAXE is a form of mild to moderate mental retardation due to the silencing of the FMR2 gene. The cellular function of FMR2 protein is presently unknown. By analogy with its homologue AF4, FMR2 was supposed to have a role in transcriptional regulation, but robust evidences supporting this hypothesis are lacking. We observed that FMR2 co-localizes with the splicing factor SC35 in nuclear speckles, the nuclear regions where splicing factors are concentrated, assembled and modified. Similarly to what was reported for splicing factors, blocking splicing or transcription leads to the accumulation of FMR2 in enlarged, rounded speckles. FMR2 is also localized in the nucleolus when splicing is blocked. We show here that FMR2 is able to specifically bind the G-quartet-forming RNA structure with high affinity. Remarkably, in vivo, in the presence of FMR2, the ESE action of the G-quartet situated in mRNA of an alternatively spliced exon of a minigene or of the putative target FMR1 appears reduced. Interestingly, FMR1 is silenced in the fragile X syndrome, another form of mental retardation. All together, our findings strongly suggest that FMR2 is an RNA-binding protein, which might be involved in alternative splicing regulation through an interaction with G-quartet RNA structure.
机译:FRAXE是由于FMR2基因沉默导致的轻度至中度智力障碍的一种形式。 FMR2蛋白的细胞功能目前未知。与其同源AF4类似,FMR2被认为在转录调控中起作用,但缺乏支持该假说的有力证据。我们观察到FMR2与剪接因子SC35在核斑中共定位,核斑是剪接因子集中,组装和修饰的核区域。与报道的剪接因子相似,阻断剪接或转录会导致FMR2积累成圆形斑点。当剪接被阻断时,FMR2也位于核仁中。我们在这里显示FMR2能够以高亲和力特异性结合G四重峰形成RNA结构。值得注意的是,在体内,在存在FMR2的情况下,位于小基因或推定靶标FMR1的可变剪接外显子的mRNA中的G四重奏的ESE作用似乎降低了。有趣的是,FMR1在脆弱的X综合征(一种智力低下)中沉默了。总之,我们的发现强烈表明FMR2是一种RNA结合蛋白,它可能通过与G四联体RNA结构的相互作用而参与其他剪接调控。

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