Park Won-Mee, Kim Min-Jeong, Jeon Chang-Jin
Department of Biology, College of Natural Sciences, Kyungpook National University, 1370 Sankyuk-dong, Daegu 702-701, South Korea.
Neurosci Res. 2004 Jun;49(2):139-55. doi: 10.1016/j.neures.2004.02.009.
Ionotropic glutamate receptor (GluR) subtypes occur in various types of cells in the central nervous system. We studied the distribution of AMPA glutamate receptor subtype GluR2/3 in the superficial layers of cat, rabbit, and hamster superior colliculus (SC) with antibody immunocytochemistry and the effect of enucleation on this distribution. Furthermore, we compared this labeling to that of calbindin D28K and parvalbumin. Anti-GluR2/3-immunoreactive (IR) cells formed a dense band of labeled cells within the lower superficial gray layer (SGL) and upper optic layer (OL) in the cat SC. By contrast, GluR2/3-IR cells formed a dense band within the upper OL in the rabbit and within the OL in the hamster SC. Calbindin D28K-IR cells are located in three layers in the SC: one within the zonal layer (ZL) and the upper SGL in all three animals, a second within the lower OL and upper IGL in the cat, within the IGL in the rabbit and within the OL in the hamster, and a third within the deep gray layer (DGL) in all three animals. Many parvalbumin-IR neurons were found within the lower SGL and upper OL. Thus, the GluR2/3-IR band was sandwiched between the first and second layers of calbindin D28K-IR cells in the cat and rabbit SC while the distribution of GluR2/3-IR cells in the hamster matches the second layer of calbindin D28K-IR cells. The patterned distribution of GluR2/3-IR cells overlapped the tier of parvalbumin-IR neurons in cat, but only partially overlapped in hamster and rabbit. Two-color immunofluorescence revealed that more than half (55.1%) of the GluR2/3-IR cells in the hamster SC expressed calbindin D28K. By contrast, only 9.9% of GluR2/3-IR cells expressed calbindin D28K in the cat. Double-labeled cells were not found in the rabbit SC. Some (4.8%) GluR2/3-IR cells in the cat SC also expressed parvalbumin, while no GluR2/3-IR cells in rabbit and hamster SC expressed parvalbumin. In this dense band of GluR2/3, the majority of labeled cells were small to medium-sized round/oval or stellate cells. Immunoreactivity for the GluR2/3 was clearly reduced in the contralateral SC following unilateral enucleation in the hamster. By contrast, enucleation appeared to have had no effect on the GluR2/3 immunoreactivity in the cat and rabbit SC. The results indicate that neurons in the mammalian SC express GluR2/3 in specific layers, which does not correlate with the expression of calbindin D28K and parvalbumin among the animals.
离子型谷氨酸受体(GluR)亚型存在于中枢神经系统的各类细胞中。我们运用抗体免疫细胞化学方法研究了猫、兔和仓鼠上丘(SC)浅层中AMPA谷氨酸受体亚型GluR2/3的分布情况,以及摘除眼球对这种分布的影响。此外,我们还将这种标记与钙结合蛋白D28K和小白蛋白的标记进行了比较。在猫的上丘中,抗GluR2/3免疫反应性(IR)细胞在浅层灰质层(SGL)下部和视层(OL)上部形成了一条密集的标记细胞带。相比之下,GluR2/3-IR细胞在兔的OL上部和仓鼠的OL中形成了一条密集带。钙结合蛋白D28K-IR细胞位于上丘的三层中:在所有三种动物中,一层位于带状层(ZL)和SGL上部,第二层在猫中位于OL下部和中间灰质层(IGL)上部、在兔中位于IGL内、在仓鼠中位于OL内,第三层在所有三种动物中位于深层灰质层(DGL)内。在SGL下部和OL上部发现了许多小白蛋白-IR神经元。因此,在猫和兔的上丘中,GluR2/3-IR带夹在钙结合蛋白D28K-IR细胞的第一层和第二层之间;而仓鼠中GluR2/3-IR细胞的分布与钙结合蛋白D28K-IR细胞的第二层相匹配。GluR2/3-IR细胞的模式分布在猫中与小白蛋白-IR神经元层重叠,但在仓鼠和兔中仅部分重叠。双色免疫荧光显示,仓鼠上丘中超过一半(55.1%)的GluR2/3-IR细胞表达钙结合蛋白D28K。相比之下,猫中只有9.9%的GluR2/3-IR细胞表达钙结合蛋白D28K。在兔的上丘中未发现双标记细胞。猫的上丘中一些(4.8%)GluR2/3-IR细胞也表达小白蛋白,而兔和仓鼠的上丘中没有GluR2/3-IR细胞表达小白蛋白。在这条密集的GluR2/3带中,大多数标记细胞为中小型圆形/椭圆形或星形细胞。仓鼠单侧摘除眼球后,对侧上丘中GluR2/3的免疫反应性明显降低。相比之下,摘除眼球似乎对猫和兔的上丘中GluR2/3的免疫反应性没有影响。结果表明,哺乳动物上丘中的神经元在特定层表达GluR2/3,这在不同动物中与钙结合蛋白D28K和小白蛋白的表达无关。