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[自闭症中突触发生的异常。致病及治疗意义]

[Abnormalities of synaptogenesis in autism. Pathogenic and therapeutic implications].

作者信息

García-Peñas Juan José, Domínguez-Carral Jana, Pereira-Bezanilla Elena

机构信息

Hospital Universitario Marques de Valdecilla. Residencia Cantabria, Santander, Spain.

出版信息

Rev Neurol. 2012 Feb 29;54 Suppl 1:S41-50.

Abstract

INTRODUCTION

The social, language, and behavioural problems that occur with autism suggest that this syndrome affects a functionally diverse and widely distributed set of neural systems.

AIMS

To review the molecular pathways involved in synaptic growth, development, and stability of human synapses. We also examine the genes implicated in synaptogenesis which have been associated with autism. In particular, we highlight the role of these genes in synaptic cell adhesion, organization of presynaptic and postsynaptic specializations, growth signaling pathways, and endosomal function.

DEVELOPMENT

Proper brain function requires stringent balance of excitatory and inhibitory synapse formation during neural circuit assembly. Mutation of genes that normally sculpt and maintain this balance results in severe dysfunction, causing neurodevelopmental disorders including autism, epilepsy, Angelman syndrome, fragile X syndrome, and Rett syndrome. Such mutations may result in defective architectural structuring of synaptic connections, molecular assembly of synapses and/or functional synaptogenesis.

CONCLUSIONS

Increased knowledge of abnormal mechanisms of human synaptogenesis may lead to define different etio-pathogenic models of autism and to understand how far abnormal cell/synaptic growth and synaptic function could be reversed.

摘要

引言

自闭症所出现的社会、语言及行为问题表明,该综合征会影响功能多样且广泛分布的一系列神经系统。

目的

回顾人类突触的突触生长、发育及稳定性所涉及的分子途径。我们还研究了与自闭症相关的突触发生中涉及的基因。特别地,我们强调这些基因在突触细胞黏附、突触前和突触后特化的组织、生长信号通路及内体功能中的作用。

发展

在神经回路组装过程中,正常的脑功能需要兴奋性和抑制性突触形成的严格平衡。通常塑造和维持这种平衡的基因突变会导致严重功能障碍,引发包括自闭症、癫痫、天使综合征、脆性X综合征和雷特综合征在内的神经发育障碍。此类突变可能导致突触连接的结构构建缺陷、突触的分子组装和/或功能性突触发生缺陷。

结论

对人类突触发生异常机制的更多了解可能有助于定义自闭症的不同病因 - 发病模型,并了解异常的细胞/突触生长及突触功能在多大程度上可以逆转。

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