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脆性 X 综合征智力迟钝的分子和细胞方面:从基因突变/到脊柱畸形发生。

Molecular and cellular aspects of mental retardation in the Fragile X syndrome: from gene mutation/s to spine dysmorphogenesis.

机构信息

Center for Human Genetics, Katholieke Universiteit Leuven, 3000 Leuven, Belgium.

出版信息

Adv Exp Med Biol. 2012;970:517-51. doi: 10.1007/978-3-7091-0932-8_23.

Abstract

The Fragile X syndrome (FXS) is the most frequent form of inherited mental retardation and also considered a monogenic cause of Autism Spectrum Disorder. FXS symptoms include neurodevelopmental delay, anxiety, hyperactivity, and autistic-like behavior. The disease is due to mutations or loss of the Fragile X Mental Retardation Protein (FMRP), an RNA-binding protein abundant in the brain and gonads, the two organs mainly affected in FXS patients. FMRP has multiple functions in RNA metabolism, including mRNA decay, dendritic targeting of mRNAs, and protein synthesis. In neurons lacking FMRP, a wide array of mRNAs encoding proteins involved in synaptic structure and function are altered. As a result of this complex dysregulation, in the absence of FMRP, spine morphology and functioning is impaired. Consistently, model organisms for the study of the syndrome recapitulate the phenotype observed in FXS patients, such as dendritic spine anomalies and defects in learning. Here, we review the fundamentals of genetic and clinical aspects of FXS, devoting a specific attention to ASD comorbidity and FXS-related diseases. We also review the current knowledge on FMRP functions through structural, molecular, and cellular findings. Finally, we discuss the neuroanatomical, electrophysiological, and behavioral defects caused by FMRP loss, as well as the current treatments able to partially revert some of the FXS abnormalities.

摘要

脆性 X 综合征(FXS)是最常见的遗传性智力障碍形式,也被认为是自闭症谱系障碍的单基因病因。FXS 的症状包括神经发育迟缓、焦虑、多动和类似自闭症的行为。该疾病是由于脆性 X 智力低下蛋白(FMRP)的突变或缺失引起的,FMRP 是一种在大脑和性腺中丰富存在的 RNA 结合蛋白,性腺是 FXS 患者受主要影响的两个器官之一。FMRP 在 RNA 代谢中具有多种功能,包括 mRNA 降解、mRNA 在树突中的靶向以及蛋白质合成。在缺乏 FMRP 的神经元中,编码参与突触结构和功能的蛋白质的多种 mRNA 发生改变。由于这种复杂的失调,在没有 FMRP 的情况下,脊柱形态和功能受损。作为研究该综合征的模型生物, recapitulate 了 FXS 患者观察到的表型,例如树突棘异常和学习缺陷。在这里,我们综述了 FXS 的遗传和临床方面的基础知识,特别关注 ASD 共病和 FXS 相关疾病。我们还通过结构、分子和细胞发现综述了 FMRP 功能的最新知识。最后,我们讨论了 FMRP 缺失引起的神经解剖、电生理和行为缺陷,以及目前能够部分逆转一些 FXS 异常的治疗方法。

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