Klumpp D J, Song E J, Ito S, Sheng M H, Jan L Y, Pinto L H
Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, Illinois 60208, USA.
J Neurosci. 1995 Jul;15(7 Pt 1):5004-13. doi: 10.1523/JNEUROSCI.15-07-05004.1995.
RT PCR on mRNA from enzymatically dissociated, isolated bipolar cells showed that these neurons express the Shaker-like K+ channels Kv1.1, Kv1.2, and Kv1.3. Immunohistochemical localization showed each channel to have a unique subcellular distribution: Kv1.1 immunoreactivity was detected in the dendrites and axons terminal, whereas Kv1.2 and Kv1.3 subunits were localized to the axon and the postsynaptic membrane of the rod ribbon synapse, respectively. Whole-cell patch-clamp recordings indicated that the activation voltage of the delayed rectifier current of the isolated bipolar cell and the inhibitory constants for current blockade by TEA, 4-AP, and Ba2+ were similar to these same properties measured for Kv1.1 expressed in oocytes. However, the TEA and 4-AP inhibitory constants for the bipolar cell current differed from the inhibitory constants for Kv1.2 or Kv1.3. These results suggest that the current of the isolated rod bipolar cell is most similar to Kv1.1 but that all three channels may function in the intact retina to allow complex modulation of retinal synaptic signals.
对酶解分离的双极细胞的mRNA进行逆转录聚合酶链反应(RT PCR),结果显示这些神经元表达类Shaker型钾通道Kv1.1、Kv1.2和Kv1.3。免疫组织化学定位显示每个通道具有独特的亚细胞分布:在树突和轴突末端检测到Kv1.1免疫反应性,而Kv1.2和Kv1.3亚基分别定位于轴突和视杆带状突触的突触后膜。全细胞膜片钳记录表明,分离的双极细胞延迟整流电流的激活电压以及TEA、4-氨基吡啶(4-AP)和Ba2+对电流阻断的抑制常数,与在卵母细胞中表达的Kv1.1所测得的相同性质相似。然而,双极细胞电流的TEA和4-AP抑制常数与Kv1.2或Kv1.3的抑制常数不同。这些结果表明,分离的视杆双极细胞的电流与Kv1.1最为相似,但这三种通道可能在完整视网膜中发挥作用,以实现视网膜突触信号的复杂调制。