首页> 美国卫生研究院文献>PLoS Genetics >A Novel Role for the RNA–Binding Protein FXR1P in Myoblasts Cell-Cycle Progression by Modulating p21/Cdkn1a/Cip1/Waf1 mRNA Stability
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A Novel Role for the RNA–Binding Protein FXR1P in Myoblasts Cell-Cycle Progression by Modulating p21/Cdkn1a/Cip1/Waf1 mRNA Stability

机译:通过绑定p21 / Cdkn1a / Cip1 / Waf1 mRNA稳定性RNA结合蛋白FXR1P在成肌细胞周期中的新作用

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摘要

The Fragile X-Related 1 gene (FXR1) is a paralog of the Fragile X Mental Retardation 1 gene (FMR1), whose absence causes the Fragile X syndrome, the most common form of inherited intellectual disability. FXR1P plays an important role in normal muscle development, and its absence causes muscular abnormalities in mice, frog, and zebrafish. Seven alternatively spliced FXR1 transcripts have been identified and two of them are skeletal muscle-specific. A reduction of these isoforms is found in myoblasts from Facio-Scapulo Humeral Dystrophy (FSHD) patients. FXR1P is an RNA–binding protein involved in translational control; however, so far, no mRNA target of FXR1P has been linked to the drastic muscular phenotypes caused by its absence. In this study, gene expression profiling of C2C12 myoblasts reveals that transcripts involved in cell cycle and muscular development pathways are modulated by Fxr1-depletion. We observed an increase of p21—a regulator of cell-cycle progression—in Fxr1-knocked-down mouse C2C12 and FSHD human myoblasts. Rescue of this molecular phenotype is possible by re-expressing human FXR1P in Fxr1-depleted C2C12 cells. FXR1P muscle-specific isoforms bind p21 mRNA via direct interaction with a conserved G-quadruplex located in its 3′ untranslated region. The FXR1P/G-quadruplex complex reduces the half-life of p21 mRNA. In the absence of FXR1P, the upregulation of p21 mRNA determines the elevated level of its protein product that affects cell-cycle progression inducing a premature cell-cycle exit and generating a pool of cells blocked at G0. Our study describes a novel role of FXR1P that has crucial implications for the understanding of its role during myogenesis and muscle development, since we show here that in its absence a reduced number of myoblasts will be available for muscle formation/regeneration, shedding new light into the pathophysiology of FSHD.
机译:与脆弱X相关的1基因(FXR1)是脆弱X心理发育迟滞1基因(FMR1)的旁系同源基因,其缺失会导致脆弱X综合征,这是遗传性智力障碍的最常见形式。 FXR1P在正常的肌肉发育中起着重要的作用,而FXR1P的缺失会导致小鼠,青蛙和斑马鱼的肌肉异常。已鉴定出七个选择性剪​​接的FXR1转录本,其中两个是骨骼肌特异性的。在Facio-Scapulo肱骨营养不良(FSHD)患者的成肌细胞中发现这些同工型的减少。 FXR1P是一种RNA结合蛋白,参与翻译控制。然而,到目前为止,还没有FXR1P的mRNA靶标与因缺乏FXR1P而导致的剧烈肌肉表型有关。在这项研究中,C2C12成肌细胞的基因表达谱显示,参与细胞周期和肌肉发育途径的转录本受Fxr1耗竭的调节。我们观察到在Fxr1敲除的小鼠C2C12和FSHD人成肌细胞中p21(细胞周期进程的调节剂)增加。通过在贫Fxr1的C2C12细胞中重新表达人FXR1P,可以拯救这种分子表型。 FXR1P肌肉特异性同工型通过与位于其3'非翻译区的保守G-四链体直接相互作用而结合p21 mRNA。 FXR1P / G-四链体复合物缩短了p21 mRNA的半衰期。在不存在FXR1P的情况下,p21 mRNA的上调决定了其蛋白产物的升高水平,从而影响细胞周期进程,诱导细胞周期过早退出并产生在G0处受阻的细胞池。我们的研究描述了FXR1P的新作用,对于理解其在成肌和肌肉发育过程中的作用具有至关重要的意义,因为我们在这里表明,在缺乏FXR1P的情况下,成肌细胞数量减少,可用于肌肉形成/再生,从而为FSHD的病理生理学。

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