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斑马鱼PSD-95基因家族成员的特征分析

Characterization of zebrafish PSD-95 gene family members.

作者信息

Meyer Martin P, Trimmer James S, Gilthorpe Jonathan D, Smith Stephen J

机构信息

Department of Molecular and Cellular Physiology, Beckman Center, Stanford University, California 94305, USA.

出版信息

J Neurobiol. 2005 May;63(2):91-105. doi: 10.1002/neu.20118.

Abstract

The PSD-95 family of membrane- associated guanylate kinases (MAGUKs) are thought to act as molecular scaffolds that regulate the assembly and function of the multiprotein signaling complex found at the postsynaptic density of excitatory synapses. Genetic analysis of PSD-95 family members in the mammalian nervous system has so far been difficult, but the zebrafish is emerging as an ideal vertebrate system for studying the role of particular genes in the developing and mature nervous system. Here we describe the cloning of the zebrafish orthologs of PSD-95, PSD-93, and two isoforms of SAP-97. Using in situ hybridization analysis we show that these zebrafish MAGUKs have overlapping but distinct patterns of expression in the developing nervous system and craniofacial skeleton. Using a pan-MAGUK antibody we show that MAGUK proteins localize to neurons within the developing hindbrain, cerebellum, visual and olfactory systems, and to skin epithelial cells. In the olfactory and visual systems MAGUK proteins are expressed strongly in synaptic regions, and the onset of expression in these areas coincides with periods of synapse formation. These data are consistent with the idea that PSD-95 family members are involved in synapse assembly and function, and provide a platform for future functional studies in vivo in a highly tractable model organism.

摘要

膜相关鸟苷酸激酶(MAGUKs)的PSD-95家族被认为起着分子支架的作用,可调节在兴奋性突触的突触后致密区发现的多蛋白信号复合物的组装和功能。迄今为止,对哺乳动物神经系统中PSD-95家族成员进行遗传分析一直很困难,但斑马鱼正成为研究特定基因在发育中和成熟神经系统中作用的理想脊椎动物系统。在此,我们描述了斑马鱼中PSD-95、PSD-93以及两种SAP-97亚型直系同源基因的克隆。通过原位杂交分析,我们发现这些斑马鱼MAGUKs在发育中的神经系统和颅面骨骼中具有重叠但不同的表达模式。使用泛MAGUK抗体,我们发现MAGUK蛋白定位于发育中的后脑、小脑、视觉和嗅觉系统内的神经元以及皮肤上皮细胞。在嗅觉和视觉系统中,MAGUK蛋白在突触区域强烈表达,并且这些区域的表达起始与突触形成时期一致。这些数据与PSD-95家族成员参与突触组装和功能的观点一致,并为在一种高度易处理的模式生物中进行未来体内功能研究提供了一个平台。

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