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Understanding fragile X syndrome: insights from animal models.

机译:了解脆弱的X综合征:动物模型的见解。

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The fragile X mental retardation syndrome is caused by large methylated expansions of a CGG repeat in the FMR1 gene leading to the loss of expression of FMRP, an RNA-binding protein. FMRP is proposed to act as a regulator of mRNA transport or translation that plays a role in synaptic maturation and function. To study the physiological function of the FMR1 protein, mouse and Drosophila models have been developed. The loss-of-function mouse model shows slightly enlarged testes, a subtle behavioral phenotype, and discrete anomalies of dendrite spines similar to those observed in brains of patients. Studies in Drosophila indicate that FXMR plays an important role in synaptogenesis and axonal arborization, which may underlie the observed deficits in flight ability and circadian behavior of FXR mutant flies. The relevance of these studies to our understanding of fragile X syndrome is discussed.
机译:脆弱的X智力低下综合征是由FMR1基因中CGG重复序列的大量甲基化扩增导致的,导致RNA结合蛋白FMRP的表达丧失。提议FMRP充当mRNA转运或翻译的调节剂,在突触成熟和功能中发挥作用。为了研究FMR1蛋白的生理功能,已经开发了小鼠和果蝇模型。功能丧失的小鼠模型显示出睾丸略微增大,行为表型微弱以及树突棘的离散异常,类似于在患者大脑中观察到的异常。果蝇研究表明,FXMR在突触发生和轴突乔化中起重要作用,这可能是观察到的FXR突变果蝇的飞行能力和昼夜节律行为不足的基础。讨论了这些研究与我们对脆性X综合征的理解的相关性。

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