Kindler Stefan, Rehbein Monika, Classen Bernhard, Richter Dietmar, Böckers Tobias M
Institute for Cell Biochemistry and Clinical Neurobiology, University Hospital Hamburg-Eppendorf, Hamburg D-20246, Germany.
Brain Res Mol Brain Res. 2004 Jul 5;126(1):14-21. doi: 10.1016/j.molbrainres.2004.03.014.
The four members of the family of synapse-associated protein 90/postsynaptic density-95-associated proteins (SAPAP1-4) are adapter proteins of postsynaptic density (PSD). They interact with different synaptic scaffolding proteins, cytoskeletal components, and signalling components, and are therefore considered to assemble functional multiprotein units at synapses. Here, we analyzed the spatiotemporal expression of SAPAP1-SAPAP4 genes in postnatal rat brain by in situ hybridization. All four genes are expressed in many brain areas, leading to overlapping yet distinct mRNA distribution patterns. Moreover, two mRNAs encoding distinct SAPAP3 isoforms exhibit basically identical postnatal expression patterns. In the hippocampus, SAPAP1, SAPAP2, and SAPAP4 transcripts are restricted to cell body zones, whereas SAPAP3 mRNAs are also detected in molecular layers. Thus, SAPAP3 is one of the few PSD components whose local synthesis in dendrites may contribute to an input-specific adaptation of dendritic spine function.
突触相关蛋白90/突触后致密物95相关蛋白家族(SAPAP1 - 4)的四个成员是突触后致密物(PSD)的衔接蛋白。它们与不同的突触支架蛋白、细胞骨架成分和信号成分相互作用,因此被认为在突触处组装功能性多蛋白单元。在此,我们通过原位杂交分析了出生后大鼠脑中SAPAP1 - SAPAP4基因的时空表达。所有四个基因均在许多脑区表达,导致mRNA分布模式重叠但又有所不同。此外,编码不同SAPAP3亚型的两种mRNA表现出基本相同的出生后表达模式。在海马体中,SAPAP1、SAPAP2和SAPAP4转录本局限于细胞体区域,而在分子层中也能检测到SAPAP3 mRNA。因此,SAPAP3是少数几种其在树突中的局部合成可能有助于树突棘功能进行输入特异性适应的PSD成分之一。