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多巴胺增强培养的视网膜水平细胞中兴奋性氨基酸门控电流。

Dopamine enhances excitatory amino acid-gated conductances in cultured retinal horizontal cells.

作者信息

Knapp A G, Dowling J E

出版信息

Nature. 1987;325(6103):437-9. doi: 10.1038/325437a0.

Abstract

In the teleost retina, cone horizontal cells receive extensive innervation from dopaminergic interplexiform cells, and possess dopamine receptors whose activation stimulates adenylate cyclase. Exogenously applied dopamine modifies several aspects of horizontal cell activity in the intact retina, including the responsiveness of these neurons to light and the strength of electrical coupling between them. We have used whole-cell voltage clamp methods to examine whether dopamine can alter the light-responsiveness of horizontal cells by changing their sensitivity to the neurotransmitter released by the photoreceptors. We report that dopamine and cyclic AMP, although having little direct effect on resting membrane conductance, greatly enhance ionic conductances gated by kainate, an agonist of the transmitter released by the photoreceptors, and by L-glutamate, the agent proposed to be the photoreceptor transmitter. Our results provide the first direct evidence for dopaminergic regulation of excitatory amino-acid neurotransmission in the vertebrate nervous system and suggest a possible mechanism to explain the reduction in the responsiveness of horizontal cells observed when retinas are treated with dopamine.

摘要

在硬骨鱼视网膜中,视锥水平细胞接受来自多巴胺能双极间细胞的广泛神经支配,并拥有多巴胺受体,其激活可刺激腺苷酸环化酶。外源性应用多巴胺可改变完整视网膜中水平细胞活动的几个方面,包括这些神经元对光的反应性以及它们之间电耦合的强度。我们使用全细胞膜片钳方法来研究多巴胺是否可以通过改变水平细胞对光感受器释放的神经递质的敏感性来改变其光反应性。我们报告说,多巴胺和环磷酸腺苷虽然对静息膜电导几乎没有直接影响,但能极大地增强由海人酸(一种光感受器释放的递质的激动剂)和L-谷氨酸(被认为是光感受器递质的物质)门控的离子电导。我们的结果为脊椎动物神经系统中多巴胺能对兴奋性氨基酸神经传递的调节提供了首个直接证据,并提出了一种可能的机制来解释当视网膜用多巴胺处理时观察到的水平细胞反应性降低的现象。

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