Enz R, Brandstätter J H, Wässle H, Bormann J
Max-Planck-Institut für Himforschung, Neuroanatomische Abteilung, Frankfurt, Germany.
J Neurosci. 1996 Jul 15;16(14):4479-90. doi: 10.1523/JNEUROSCI.16-14-04479.1996.
Polyclonal antibodies against the N terminus of the rat rho 1 subunit were generated to study the distribution of GABAc receptors in the mammalian retina. The specificity of the antibodies was tested in Western blots and transfected HEK-293 cells. No cross-reactivity with the GABAA receptor subunits alpha 1-3, beta 1-3, gamma 2, delta or with the glycine receptor subunits alpha 1 and beta could be detected. In contrast, the rho 1, rho 2, and rho 3 subunits were all recognized by the antibodies. In vertical sections of rat, rabbit, cat, and macaque monkey retinae, strong punctate immunoreactivity was present in the inner plexiform layer. Weaker immunoreactivity was also present in the outer-plexiform layer, and cell bodies of bipolar cells were faintly labeled. Double immunostaining of vertical sections and immunostaining of dissociated rat retinae showed the punctate immunofluorescence to colocalize with bipolar cell axon terminals. The puncta possibly represent clustering of the rho subunits at postsynaptic sites.
为了研究GABAc受体在哺乳动物视网膜中的分布,制备了针对大鼠rho 1亚基N端的多克隆抗体。在蛋白质免疫印迹和转染的HEK - 293细胞中检测了抗体的特异性。未检测到与GABAA受体亚基α1 - 3、β1 - 3、γ2、δ或甘氨酸受体亚基α1和β的交叉反应。相反,rho 1、rho 2和rho 3亚基均能被抗体识别。在大鼠、兔、猫和猕猴视网膜的垂直切片中,内网状层存在强烈的点状免疫反应性。外网状层也存在较弱的免疫反应性,双极细胞的细胞体被微弱标记。垂直切片的双重免疫染色和大鼠视网膜解离后的免疫染色显示,点状免疫荧光与双极细胞轴突终末共定位。这些点可能代表rho亚基在突触后位点的聚集。