Yadav Shubhash Chandra, Ganzen Logan, Nawy Scott, Kramer Richard H
University of California Berkeley, Department of Molecular and Cell Biology. Berkeley, CA, USA.
bioRxiv. 2024 Jul 5:2024.07.03.601922. doi: 10.1101/2024.07.03.601922.
Bipolar cells of the retina carry visual information from photoreceptors in the outer retina to retinal ganglion cells (RGCs) in the inner retina. Bipolar cells express L-type voltage-gated Ca channels at the synaptic terminal, but generally lack other types of channels capable of regenerative activity. As a result, the flow of information from outer to inner retina along bipolar cell processes is generally passive in nature, with no opportunity for signal boost or amplification along the way. Here we report the surprising discovery that blocking voltage-gated Na channels profoundly reduces the synaptic output of one class of bipolar cell, the type 6 ON bipolar cell (CBC6), despite the fact that the CBC6 itself does not express voltage-gated Na channels. Instead, CBC6 borrows voltage-gated Na channels from its neighbor, the inhibitory AII amacrine cell, with whom it is connected via an electrical synapse. Thus, an inhibitory neuron aids in amplification of an excitatory signal as it moves through the retina, ensuring that small changes in the membrane potential of bipolar cells are reliably passed onto downstream RGCs.
视网膜双极细胞将视觉信息从外视网膜的光感受器传递至内视网膜的视网膜神经节细胞(RGC)。双极细胞在突触末端表达L型电压门控钙通道,但通常缺乏其他能够产生再生活动的通道类型。因此,沿双极细胞进程从外视网膜到内视网膜的信息流在本质上通常是被动的,沿途没有信号增强或放大的机会。在此,我们报告了一个惊人的发现:尽管6型ON双极细胞(CBC6)本身不表达电压门控钠通道,但阻断电压门控钠通道会显著降低一类双极细胞即CBC6的突触输出。相反,CBC6从其邻居抑制性AII无长突细胞借用电压门控钠通道,它与AII无长突细胞通过电突触相连。因此,一个抑制性神经元在兴奋性信号通过视网膜时帮助其放大,确保双极细胞膜电位的微小变化可靠地传递给下游的RGC。