Vardi N, Matesic D F, Manning D R, Liebman P A, Sterling P
Department of Anatomy, University of Pennsylvania, Philadelphia 19104-6058.
Vis Neurosci. 1993 May-Jun;10(3):473-8. doi: 10.1017/s0952523800004697.
Synaptic transmission from photoreceptors to depolarizing bipolar cells is mediated by the APB glutamate receptor. This receptor apparently is coupled to a G-protein which activates cGMP-phosphodiesterase to modulate cGMP levels and thus a cGMP-gated cation channel. We attempted to localize this system immunocytochemically using antibodies to various components of the rod phototransduction cascade, including Gt (transducin), phosphodiesterase, the cGMP-gated channel, and arrestin. All of these antibodies reacted strongly with rods, but none reacted with bipolar cells. Antibodies to a different G-protein, G(o), reacted strongly with rod bipolar cells of three mammalian species (which are depolarizing and APB-sensitive). Also stained were subpopulations of cone bipolar cells but not the major depolarizing type in cat (b1). G(o) antibody also stained certain salamander bipolar cells. Thus, across a wide range of species, G(o) is present in retinal bipolar cells, and at least some of these are depolarizing and APB-sensitive.
从光感受器到去极化双极细胞的突触传递由APB谷氨酸受体介导。该受体显然与一种G蛋白偶联,该G蛋白激活cGMP磷酸二酯酶以调节cGMP水平,进而调节cGMP门控阳离子通道。我们试图使用针对视杆光转导级联反应各种成分的抗体,包括Gt(转导素)、磷酸二酯酶、cGMP门控通道和抑制蛋白,通过免疫细胞化学方法定位该系统。所有这些抗体都与视杆细胞强烈反应,但没有一种与双极细胞反应。针对另一种G蛋白G(o)的抗体与三种哺乳动物的视杆双极细胞强烈反应(这些细胞是去极化的且对APB敏感)。锥体双极细胞的亚群也被染色,但猫的主要去极化类型(b1)没有被染色。G(o)抗体也对某些蝾螈双极细胞进行了染色。因此,在广泛的物种中,G(o)存在于视网膜双极细胞中,并且其中至少一些是去极化的且对APB敏感。