首页> 外文期刊>Journal of Neuroscience Research >Selective activation of group III metabotropic glutamate receptor subtypes produces different patterns of γ-aminobutyric acid immunoreactivity and glutamate release in the retina
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Selective activation of group III metabotropic glutamate receptor subtypes produces different patterns of γ-aminobutyric acid immunoreactivity and glutamate release in the retina

机译:III类代谢型谷氨酸受体亚型的选择性激活在视网膜中产生不同类型的γ-氨基丁酸免疫反应性和谷氨酸释放

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摘要

Glutamate, the major excitatory neurotransmitter in the retina, functions by activation of both ionotropic (iGluR) and metabotropic (mGluR) glutamate receptors. Group III mGluRs, except for mGluR6, are mostly found in the inner plexiform layer (IPL), and their retinal functions are not well known. Therefore, we decided to investigate the effect of mGluRIII on glutamate release and GABAergic amacrine cells in the chick retina. The nonselective mGluRIII agonist L-SOP promoted a decrease in the number of γ-aminobutyric acid (GABA)-positive cells and in the GABA immunoreactivity in all sublayers of the IPL. This effect was prevented by the antagonist MAP-4, by GAT-1 inhibitor, and by antagonists of iGluR. Under the conditions used, L-SOP did not alter endogenous glutamate release. VU0155041, an mGluR4-positive allosteric modulator, reduced GABA immunoreactivity in amacrine cells and in sublayers 2 and 4 of the IPL but evoked an increase in the glutamate released. VU0155041's effect was inhibited by the absence of calcium. AMN082, a selective mGluR7-positive allosteric modulator, also decreased GABA immunoreactivity in amacrine cells and sublayers 1, 2, and 3 and increased glutamate release, and this effect was also inhibited by calcium absence. DCPG, an mGluR8-selective agonist, did not significantly alter GABA immunoreactivity in amacrine cells or glutamate release. However, it did significantly increase GABA immunoreactivity in sublayers 4 and 5. The results suggest that mGluRIIIs are involved in the modulation of glutamate and GABA release in the retina, possibly participating in distinct visual pathways: mGluR4 might be involved with cholinergic circuitry, whereas mGluR7 and mGluR8 might participate, respectively, in the OFF and the ON pathways.
机译:谷氨酸是视网膜中主要的兴奋性神经递质,它通过激活离子型(iGluR)和代谢型(mGluR)谷氨酸受体而起作用。除mGluR6外,III类mGluRs多见于内部丛状层(IPL),其视网膜功能尚不为人所知。因此,我们决定研究mGluRIII对雏鸡视网膜中谷氨酸释放和GABA能无长突细胞的影响。非选择性mGluRIII激动剂L-SOP促进了IPL所有亚层中γ-氨基丁酸(GABA)阳性细胞数量的减少和GABA免疫反应性的降低。拮抗剂MAP-4,GAT-1抑制剂和iGluR拮抗剂可防止这种作用。在所使用的条件下,L-SOP不会改变内源性谷氨酸的释放。 mUluR4阳性变构调节剂VU0155041降低了无长突细胞以及IPL亚层2和4中的GABA免疫反应性,但引起了释放的谷氨酸增加。 VU0155041的作用被钙的缺乏所抑制。 AMN082,一种选择性的mGluR7阳性变构调节剂,也降低了无长突细胞和亚层1、2和3中的GABA免疫反应性,并增加了谷氨酸盐的释放,而且这种作用也因缺钙而受到抑制。 DCPG是一种mGluR8选择性激动剂,不会显着改变无长突霉素细胞中GABA的免疫反应性或谷氨酸的释放。然而,它确实显着增加了亚层4和5的GABA免疫反应性。结果表明,mGluRIII参与了视网膜中谷氨酸和GABA释放的调节,可能参与了不同的视觉途径:mGluR4可能与胆碱能回路有关,而mGluR7 mGluR8和mGluR8可能分别参与OFF和ON途径。

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