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在灵长类 S- cones 下方富集了 GABA 能型前馈信号在 HII 水平细胞和蓝锥双极细胞之间的突触元件。

Synaptic elements for GABAergic feed-forward signaling between HII horizontal cells and blue cone bipolar cells are enriched beneath primate S-cones.

机构信息

Department of Ophthalmology, University of Washington, Seattle, Washington, United States of America.

Neuroanatomy, Max Planck Institute for Brain Research, Frankfurt am Main, Germany.

出版信息

PLoS One. 2014 Feb 20;9(2):e88963. doi: 10.1371/journal.pone.0088963. eCollection 2014.

Abstract

The functional roles and synaptic features of horizontal cells in the mammalian retina are still controversial. Evidence exists for feedback signaling from horizontal cells to cones and feed-forward signaling from horizontal cells to bipolar cells, but the details of the latter remain elusive. Here, immunohistochemistry and confocal microscopy were used to analyze the expression patterns of the SNARE protein syntaxin-4, the GABA receptor subunits α1 and ρ, and the cation-chloride cotransporters NKCC and KCC2 in the outer plexiform layer of primate retina. In macaque retina, as observed previously in other species, syntaxin-4 was expressed on dendrites and axon terminals of horizontal cells at cone pedicles and rod spherules. At cones, syntaxin-4 appeared densely clustered in two bands, at horizontal cell dendritic tips and at the level of desmosome-like junctions. Interestingly, in the lower band where horizontal cells may synapse directly onto bipolar cells, syntaxin-4 was highly enriched beneath short-wavelength sensitive (S) cones and colocalized with calbindin, a marker for HII horizontal cells. The enrichment at S-cones was not observed in either mouse or ground squirrel. Furthermore, high amounts of both GABA receptor and cation-chloride cotransporter subunits were found beneath primate S-cones. Finally, while syntaxin-4 was expressed by both HI and HII horizontal cell types, the intense clustering and colocalization with calbindin at S-cones indicated an enhanced expression in HII cells. Taken together, GABA receptors beneath cone pedicles, chloride transporters, and syntaxin-4 are putative constituents of a synaptic set of proteins which would be required for a GABA-mediated feed-forward pathway via horizontal cells carrying signals directly from cones to bipolar cells.

摘要

哺乳动物视网膜水平细胞的功能作用和突触特征仍然存在争议。有证据表明水平细胞向视锥细胞发出反馈信号,向双极细胞发出前馈信号,但后者的细节仍不清楚。本研究采用免疫组织化学和共聚焦显微镜技术,分析了 SNARE 蛋白突触融合蛋白-4、GABA 受体亚基α1和ρ以及阳离子-氯离子共转运蛋白 NKCC 和 KCC2在外网状层中的表达模式。在猕猴视网膜中,与在其他物种中观察到的情况一样,突触融合蛋白-4表达在视锥小体和视杆小球处水平细胞的树突和轴突末端。在视锥细胞上,突触融合蛋白-4在两个带中呈密集聚集,一个位于水平细胞树突末梢,另一个位于桥粒样连接水平。有趣的是,在下带中,水平细胞可能直接与双极细胞突触,突触融合蛋白-4在短波长敏感(S)视锥细胞下方高度富集,并与钙结合蛋白共定位,钙结合蛋白是 HII 水平细胞的标志物。在小鼠或地松鼠中均未观察到 S 视锥细胞的富集。此外,在灵长类 S 视锥细胞下方还发现了大量的 GABA 受体和阳离子-氯离子共转运蛋白亚基。最后,尽管突触融合蛋白-4表达于 HI 和 HII 两种水平细胞类型,但在 S 视锥细胞上与钙结合蛋白的强烈聚集和共定位表明 HII 细胞的表达增强。总之,位于视锥小体下方的 GABA 受体、氯离子转运体和突触融合蛋白-4可能是构成一个突触蛋白集合的组成部分,对于通过水平细胞将信号直接从视锥细胞传递到双极细胞的 GABA 介导的前馈途径是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f33d/3930591/c51ab32554f3/pone.0088963.g001.jpg

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