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首页> 外文期刊>Current Biology: CB >The Drosophila fragile X mental retardation protein controls actin dynamics by directly regulating profilin in the brain
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The Drosophila fragile X mental retardation protein controls actin dynamics by directly regulating profilin in the brain

机译:果蝇脆弱的X智力障碍蛋白通过直接调节脑内的profilin来控制肌动蛋白动态。

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Loss of Fragile X mental retardation protein (FMRP) function causes the highly prevalent Fragile X syndrome [1, 2]. Identifying targets for the RNA binding FMRP is a major challenge and an important goal of research into the pathology of the disease. Perturbations in neuronal development and circadian behavior are seen in Drosophila dfmr1 mutants. Here we show that regulation of the actin cytoskeleton is under dFMRP control. dFMRP binds the mRNA of the Drosophila profilin homolog and negatively regulates Profilm protein expression. An increase in Profilin mimics the phenotype of dfmr1 mutants. Conversely, decreasing Profilin levels suppresses dfmrl phenotypes. These data place a new emphasis on actin mis-regulation as a major problem in dfmr1 mutant neurons.
机译:脆性X智力低下蛋白(FMRP)功能的丧失导致高度流行的脆性X综合征[1,2]。鉴定与FMRP结合的RNA的靶标是对该疾病病理学进行研究的主要挑战和重要目标。在果蝇dfmr1突变体中看到了神经元发育和昼夜节律行为的摄动。在这里,我们显示肌动蛋白细胞骨架的调节处于dFMRP控制之下。 dFMRP结合果蝇profilin同源的mRNA,并负调节Profilm蛋白的表达。 Profilin的增加模仿dfmr1突变体的表型。相反,降低Profilin水平可抑制dfmrl表型。这些数据重新强调肌动蛋白失调是dfmr1突变神经元中的一个主要问题。

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