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Morphological and physiological properties of enhanced green fluorescent protein (EGFP)-expressing wide-field amacrine cells in the ChAT-EGFP mouse line

机译:ChAT-EGFP小鼠系中表达增强型绿色荧光蛋白(EGFP)的宽视野无长突细胞的形态和生理特性

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Mammalian retinas comprise a variety of interneurons, among which amacrine cells represent the largest group, with more than 30 different cell types each exhibiting a rather distinctive morphology and carrying out a unique function in retinal processing. However, many amacrine types have not been studied systematically because, in particular, amacrine cells with large dendritic fields, i.e. wide-field amacrine cells, have a low abundance and are therefore difficult to target. Here, we used a transgenic mouse line expressing the coding sequence of enhanced green fluorescent protein under the promoter for choline acetyltransferase (ChAT-EGFP mouse) and characterized a single wide-field amacrine cell population monostratifying in layer 2/3 of the inner plexiform layer (WA-S2/3 cell). Somata of WA-S2/3 cells are located either in the inner nuclear layer or are displaced to the ganglion cell layer and exhibit a low cell density. Using immunohistochemistry, we show that WA-S2/3 cells are presumably GABAergic but may also release acetylcholine as their somata are weakly positive for ChAT. Two-photon-guided patch-clamp recordings from intact retinas revealed WA-S2/3 cells to be ON-OFF cells with a homogenous receptive field even larger than the dendritic field. The large spatial extent of the receptive field is most likely due to the extensive homologous and heterologous coupling among WA-S2/3 cells and to other amacrine cells, respectively, as indicated by tracer injections. In summary, we have characterized a novel type of GABAergic ON-OFF wide-field amacrine cell which is ideally suited to providing long-range inhibition to ganglion cells due to its strong coupling.
机译:哺乳动物的视网膜包括多种中间神经元,其中无长突细胞是最大的组,具有30多种不同的细胞类型,每种细胞表现出相当独特的形态并在视网膜加工中发挥独特的功能。但是,由于特别是树突状视野大的无长突细胞即广视野无长突细胞的丰度低,难以靶向,因此尚未对许多无长突类型进行系统地研究。在这里,我们使用转基因小鼠品系在胆碱乙酰基转移酶启动子下表达增强的绿色荧光蛋白的编码序列(ChAT-EGFP小鼠),并表征了在内部丛状层的第2/3层单层化的单个宽视野无长突细胞群(WA-S2 / 3电池)。 WA-S2 / 3细胞的气孔位于核内层或转移到神经节细胞层,并且细胞密度低。使用免疫组织化学,我们显示出WA-S2 / 3细胞可能是GABA能的,但也可能释放乙酰胆碱,因为它们的躯体对ChAT呈弱阳性。来自完整视网膜的双光子引导膜片钳记录显示,WA-S2 / 3细胞是开-关细胞,具有均匀的接受野,甚至大于树突状野。示踪剂注射表明,感受野的较大空间范围很可能是由于WA-S2 / 3细胞和其他无长突细胞之间广泛的同源和异源偶联。总而言之,我们已经表征了一种新型的GABA能性ON-OFF宽视野无长突细胞,由于其牢固的耦合,非常适合对神经节细胞提供远距离抑制。

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