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首页> 外文期刊>RNA >FMRP regulates actin filament organization via the armadillo protein p0071
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FMRP regulates actin filament organization via the armadillo protein p0071

机译:FMRP通过犰狳蛋白p0071调节肌动蛋白丝的组织

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Loss of fragile X mental retardation protein (FMRP) causes synaptic dysfunction and intellectual disability. FMRP is an RNAbinding protein that controls the translation or turnover of a subset of mRNAs. Identifying these target transcripts is an important step toward understanding the pathology of the disease. Here, we show that FMRP regulates actin organization and neurite outgrowth via the armadillo protein p0071. In mouse embryonic fibroblasts (MEFs) lacking FMRP (Fmr1-), the actin cytoskeleton was markedly reorganized with reduced stress fibers and F-actin/G-actin ratios compared to fibroblasts reexpressing the protein. FMRP interfered with the translation of the p0071 mRNA in a 3'-UTR-dependent manner. Accordingly, FMRP-depleted cells revealed elevated levels of p0071 protein. The knockdown of p0071 in Fmr1- fibroblasts restored stress fibers and an elongated cell shape, thus rescuing the Fmr1- phenotype, whereas overexpression of p0071 in Fmr1+ cells mimicked the Fmr1- phenotype. Moreover, p0071 and FMRP regulated neurite outgrowth and branching in a diametrically opposed way in agreement with the negative regulation of p0071 by FMRP. These results identify p0071 as an important and novel FMRP target and strongly suggest that impaired actin cytoskeletal functions mediated by an excess of p0071 are key aspects underlying the fragile X syndrome.
机译:脆弱的X智力低下蛋白(FMRP)的丧失会导致突触功能障碍和智力障碍。 FMRP是一种RNA结合蛋白,可控制mRNA子集的翻译或转换。识别这些目标转录本是理解该疾病病理学的重要一步。在这里,我们表明FMRP通过犰狳蛋白p0071调节肌动蛋白的组织和神经突的生长。在缺少FMRP(Fmr1-)的小鼠胚胎成纤维细胞(MEF)中,与重新表达该蛋白的成纤维细胞相比,肌动蛋白细胞骨架显着重组,应力纤维减少,F-肌动蛋白/ G-肌动蛋白比率降低。 FMRP以3'-UTR依赖性方式干扰p0071 mRNA的翻译。因此,FMRP耗尽的细胞显示p0071蛋白水平升高。 Fmr1-成纤维细胞中p0071的敲低恢复了应力纤维和细长的细胞形状,从而拯救了Fmr1-表型,而Fmr1 +细胞中p0071的过表达模仿了Fmr1-表型。此外,p0071和FMRP与FMRP对p0071的负调控一致,以完全相反的方式调控神经突的生长和分支。这些结果将p0071鉴定为重要且新颖的FMRP靶标,并强烈表明由过量p0071介导的肌动蛋白细胞骨架功能受损是脆弱X综合征的关键方面。

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