Hellmer C B, Zhou Y, Fyk-Kolodziej B, Hu Z, Ichinose T
Department of Anatomy and Cell Biology, Wayne State University School of Medicine, Detroit, MI 48201, United States.
Department of Otolaryngology, Wayne State University School of Medicine, Detroit, MI 48201, United States.
Neuroscience. 2016 Feb 19;315:246-58. doi: 10.1016/j.neuroscience.2015.12.016. Epub 2015 Dec 15.
Retinal bipolar cells are second-order neurons in the visual system, which initiate multiple image feature-based neural streams. Among more than ten types of bipolar cells, type-5 cells are thought to play a role in motion detection pathways. Multiple subsets of type-5 cells have been reported; however, detailed characteristics of each subset have not yet been elucidated. Here, we found that they exhibit distinct morphological features as well as unique voltage-gated channel expression. We have conducted electrophysiological and immunohistochemical analysis of retinal bipolar cells. We defined type-5 cells by their axon terminal ramification in the inner plexiform layer between the border of ON/OFF sublaminae and the ON choline acetyltransferase (ChAT) band. We found three subsets of type-5 cells: XBCs had the widest axon terminals that stratified at a close approximation of the ON ChAT band as well as exhibiting large voltage-gated Na(+) channel activity, type-5-1 cells had compact terminals and no Na(+) channel activity, and type-5-2 cells contained umbrella-shaped terminals as well as large voltage-gated Na(+) channel activity. Hyperpolarization-activated cyclic nucleotide-gated (HCN) currents were also evoked in all type-5 bipolar cells. We found that XBCs and type-5-2 cells exhibited larger HCN currents than type-5-1 cells. Furthermore, the former two types showed stronger HCN1 expression than the latter. Our previous observations (Ichinose et al., 2014) match the current study: low temporal tuning cells that we named 5S corresponded to 5-1 in this study, while high temporal tuning 5f cells from the previous study corresponded to 5-2 cells. Taken together, we found three subsets of type-5 bipolar cells based on their morphologies and physiological features.
视网膜双极细胞是视觉系统中的二级神经元,可启动多种基于图像特征的神经流。在十多种类型的双极细胞中,5型细胞被认为在运动检测通路中发挥作用。已报道了5型细胞的多个亚群;然而,每个亚群的详细特征尚未阐明。在此,我们发现它们表现出不同的形态特征以及独特的电压门控通道表达。我们对视网膜双极细胞进行了电生理和免疫组织化学分析。我们根据其轴突终末在ON/OFF亚层边界与ON胆碱乙酰转移酶(ChAT)带之间的内网状层中的分支来定义5型细胞。我们发现了5型细胞的三个亚群:XBCs具有最宽的轴突终末,其分层接近ON ChAT带,并表现出较大的电压门控Na(+)通道活性,5-1型细胞具有紧密的终末且无Na(+)通道活性,5-2型细胞包含伞状终末以及较大的电压门控Na(+)通道活性。所有5型双极细胞也都诱发了超极化激活的环核苷酸门控(HCN)电流。我们发现XBCs和5-2型细胞比5-1型细胞表现出更大的HCN电流。此外,前两种类型的HCN1表达比后一种更强。我们之前的观察结果(Ichinose等人,2014年)与当前研究相符:我们命名为5S的低时间调谐细胞在本研究中对应于5-1,而先前研究中的高时间调谐5f细胞对应于5-2细胞。综上所述,我们基于其形态和生理特征发现了5型双极细胞的三个亚群。