Felkl M, Leube R E
Institute of Molecular and Cellular Anatomy, RWTH Aachen University, Wendlingweg 2, 52074 Aachen, Germany.
Neuroscience. 2008 Oct 2;156(2):344-52. doi: 10.1016/j.neuroscience.2008.07.033. Epub 2008 Jul 25.
Synaptophysin (SYP) is a major protein of neurotransmitter-containing vesicles spanning the membrane four times and contributing to various aspects of the synaptic vesicle cycle. The split-ubiquitin yeast two-hybrid system was used to characterize molecular interactions of membrane-bound, full-length murine SYP. In this way, the known homophilic SYP-SYP association could be confirmed and heterophilic binding of SYP to other tetraspan vesicle membrane proteins of the secretory carrier-associated membrane- and synaptogyrin-type could be detected for the first time. SYP-binding was also observed for the vSNARE synaptobrevin2 and various membrane and membrane-associated proteins. Double labeling immunofluorescence microscopy of murine retina, co-immunoprecipitation experiments and fluorescence energy resonance transfer (FRET) analyses between fluorescent protein-tagged polypeptides were carried out to validate and further characterize the association of SYP with the tetraspan vesicle membrane proteins secretory carrier-associated membrane protein 1 and synaptogyrin3, with synaptobrevin2, and the newly identified binding partners phospholipase D4, stathmin-like3, Rho family GTPase2 and ADP-ribosylation factor interacting protein2. It was observed that the carboxyterminus of SYP is dispensable for association with integral membrane proteins while it is needed for binding to membrane-associated polypeptides. The latter appears to be regulated by phosphorylation, since src homology 2-domains were shown to attach to the multiple carboxyterminal phosphotyrosine residues of SYP. In conclusion, the association of SYP with different tetraspan vesicle membrane proteins suggests shared functions and the multiple other interactions identify SYP as part of a membrane platform acting as a facilitator of various steps of the synaptic vesicle cycle.
突触素(SYP)是一种主要存在于含神经递质囊泡中的蛋白质,它四次跨膜,参与突触囊泡循环的各个方面。利用裂合泛素酵母双杂交系统来表征膜结合的全长小鼠SYP的分子相互作用。通过这种方式,可以证实已知的SYP-SYP同源性结合,并且首次检测到SYP与分泌载体相关膜和突触旋转蛋白类型的其他四跨膜囊泡膜蛋白的异源性结合。还观察到SYP与囊泡相关膜蛋白2(vSNARE)以及各种膜和膜相关蛋白的结合。进行了小鼠视网膜的双标记免疫荧光显微镜检查、免疫共沉淀实验以及荧光蛋白标记多肽之间的荧光能量共振转移(FRET)分析,以验证并进一步表征SYP与四跨膜囊泡膜蛋白分泌载体相关膜蛋白1和突触旋转蛋白3、与囊泡相关膜蛋白2以及新鉴定的结合伴侣磷脂酶D4、类stathmin 3、Rho家族GTP酶2和ADP-核糖基化因子相互作用蛋白2的结合。观察到SYP的羧基末端对于与整合膜蛋白的结合是可有可无的,而与膜相关多肽的结合则需要它。后者似乎受磷酸化调节,因为src同源2结构域显示可附着于SYP多个羧基末端的磷酸酪氨酸残基。总之,SYP与不同的四跨膜囊泡膜蛋白的结合表明它们具有共同功能,而多种其他相互作用表明SYP是膜平台的一部分,作为突触囊泡循环各个步骤的促进者。