High-resolution proteomic mapping in the vertebrate central nervous system: close proximity of connexin35 to NMDA glutamate receptor clusters and co-localization of connexin36 with immunoreactivity for zonula occludens protein-1 (ZO-1).

J E Rash, A Pereda, N Kamasawa, C S Furman, T Yasumura, K G V Davidson, F E Dudek, C Olson, X Li, J I Nagy
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引用次数: 65

Abstract

Combined confocal microscopy and freeze-fracture replica immunogold labeling (FRIL) were used to examine the connexin identity at electrical synapses in goldfish brain and rat retina, and to test for "co-localization" vs. "close proximity" of connexins to other functionally interacting proteins in synapses of goldfish and mouse brain and rat retina. In goldfish brain, confocal microscopy revealed immunofluorescence for connexin35 (Cx35) and NMDA-R1 (NR1) glutamate receptor protein in Mauthner Cell/Club Ending synapses. By FRIL double labeling, NR1 glutamate receptors were found in clusters of intramembrane particles in the postsynaptic membrane extraplasmic leaflets, and these distinctive postsynaptic densities were in close proximity (0.1-0.3 microm) to neuronal gap junctions labeled for Cx35, which is the fish ortholog of connexin36 (Cx36) found at neuronal gap junctions in mammals. Immunogold labeling for Cx36 in adult rat retina revealed abundant gap junctions, including several previously unrecognized morphological types. As in goldfish hindbrain, immunogold double labeling revealed NR1-containing postsynaptic densities localized near Cx36-labeled gap junction in rat inferior olive. Confocal immunofluorescence microscopy revealed widespread co-localization of Cx36 and ZO-1, particularly in the reticular thalamic nucleus and amygdala of mouse brain. By FRIL, ZO-1 immunoreactivity was co-localized with Cx36 at individual gap junction plaques in rat retinal neurons. As cytoplasmic accessory proteins, ZO-1 and possibly related members of the membrane-associated guanylate kinase (MAGUK) family represent scaffolding proteins that may bind to and regulate the activity of many neuronal gap junctions. These data document the power of combining immunofluorescence confocal microscopy with FRIL ultrastructural imaging and immunogold labeling to determine the relative proximities of proteins that are involved in short- vs. intermediate-range molecular interactions in the complex membrane appositions at synapses between neurons.

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脊椎动物中枢神经系统的高分辨率蛋白质组图谱:连接蛋白 35 与 NMDA 谷氨酸受体簇非常接近,连接蛋白 36 与封闭带蛋白-1 (ZO-1) 的免疫反应共定位。
研究人员利用共聚焦显微镜和冻裂复制免疫金标记(FRIL)技术检测了金鱼大脑和大鼠视网膜电突触中的连接蛋白特性,并检验了金鱼、小鼠大脑和大鼠视网膜突触中连接蛋白与其他功能互作蛋白的 "共定位 "与 "近距离"。在金鱼大脑中,共聚焦显微镜显示 Mauthner Cell/Club Ending 突触中的连接蛋白 35(Cx35)和 NMDA-R1 (NR1)谷氨酸受体蛋白的免疫荧光。通过 FRIL 双标记,NR1 谷氨酸受体在突触后膜质外小叶的膜内颗粒群中被发现,这些独特的突触后密度非常接近(0.1-0.3 微米)被标记为 Cx35 的神经元间隙连接,Cx35 是哺乳动物神经元间隙连接中发现的 connexin36(Cx36)的鱼类直向同源物。对成年大鼠视网膜中的 Cx36 进行免疫金标记后发现了大量的间隙连接,其中包括几种以前未曾发现的形态类型。与金鱼后脑中的情况一样,免疫金双重标记发现大鼠下橄榄中的Cx36标记间隙连接附近存在含有NR1的突触后密度。共聚焦免疫荧光显微镜发现 Cx36 和 ZO-1 广泛共定位,尤其是在小鼠大脑丘脑网状核和杏仁核中。通过 FRIL,ZO-1 免疫反应与 Cx36 共同定位在大鼠视网膜神经元的单个间隙连接斑块上。作为细胞质附属蛋白,ZO-1 和可能相关的膜相关鸟苷酸激酶(MAGUK)家族成员代表了可能与许多神经元间隙连接结合并调节其活性的支架蛋白。这些数据证明了免疫荧光共聚焦显微镜与 FRIL 超微结构成像和免疫金标记相结合的威力,可以确定在神经元突触的复杂膜连接中参与短程与中程分子相互作用的蛋白质的相对距离。
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