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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Mammalian retinal horizontal cells are unconventional GABAergic neurons.
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Mammalian retinal horizontal cells are unconventional GABAergic neurons.

机译:哺乳动物视网膜水平细胞是非常规的GABA能神经元。

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Lateral interactions at the first retinal synapse have been initially proposed to involve GABA by transporter-mediated release from horizontal cells, onto GABA(A) receptors expressed on cone photoreceptor terminals and/or bipolar cell dendrites. However, in the mammalian retina, horizontal cells do not seem to contain GABA systematically or to express membrane GABA transporters. We here report that mouse retinal horizontal cells express GAD65 and/or GAD67 mRNA, and were weakly but consistently immunostained for GAD65/67. While GABA was readily detected after intracardiac perfusion, it was lost during classical preparation for histology or electrophysiology. It could not be restored by incubation in a GABA-containing medium, confirming the absence of membrane GABA transporters in these cells. However, GABA was synthesized de novo from glutamate or glutamine, upon addition of pyridoxal 5'-phosphate, a cofactor of GAD65/67. Mouse horizontal cells are thus atypical GABAergic neurons, with no functional GABA uptake, but a glutamate and/or glutamine transport system allowing GABA synthesis, probably depending physiologically from glutamate released by photoreceptors. Our results suggest that the role of GABA in lateral inhibition may have been underestimated, at least in mammals, and that tissue pre-incubation with glutamine and pyridoxal 5'-phosphate should yield a more precise estimate of outer retinal processing.
机译:最初已经提出了在第一视网膜突触的横向相互作用涉及通过转运蛋白从水平细胞释放到锥体光感受器末端和/或双极细胞树突上表达的GABA(A)受体上的GABA。但是,在哺乳动物的视网膜中,水平细胞似乎没有系统地包含GABA或表达膜GABA转运蛋白。我们在这里报告小鼠视网膜水平细胞表达GAD65和/或GAD67 mRNA,并且对GAD65 / 67免疫力弱但始终如一。尽管在心脏内灌注后很容易检测到GABA,但在经典组织学或电生理学准备过程中GABA丢失了。通过在含GABA的培养基中孵育无法恢复,证实这些细胞中不存在膜GABA转运蛋白。但是,在添加吡咯醛5'-磷酸(GAD65 / 67的辅助因子)后,GABA由谷氨酸或谷氨酰胺从头合成。因此,小鼠水平细胞是非典型的GABA能神经元,没有功能性GABA摄取,但是谷氨酸和/或谷氨酰胺转运系统可以合成GABA,可能在生理上取决于光感受器释放的谷氨酸。我们的研究结果表明,至少在哺乳动物中,GABA在侧向抑制中的作用可能被低估了,并且与谷氨酰胺和吡ido醛5'-磷酸预孵育的组织应能更精确地估计视网膜的外部加工。

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