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兔OFF-α神经节细胞上甘氨酸、GABAA和GABAB受体的证据。

Evidence for glycine, GABAA, and GABAB receptors on rabbit OFF-alpha ganglion cells.

作者信息

Rotolo Thomas C, Dacheux Ramon F

机构信息

Department of Ophthalmology, University of Alabama at Birmingham, Birmingham 35294-0009, USA.

出版信息

Vis Neurosci. 2003 May-Jun;20(3):285-96. doi: 10.1017/s0952523803203072.

Abstract

Inhibitory synaptic transmission via GABA and glycine receptors plays a crucial role in shaping the excitatory response of neurons in the retina. Whole-cell recordings were obtained from ganglion cells in the intact rabbit eyecup preparation to correlate GABA- and glycine-activated currents with the presence of their specific receptors on morphologically identified a ganglion cells. Alpha ganglion cells were chosen based upon their large somata when viewing the retinal surface, and responses to light and dark spots were used to identify OFF-alpha ganglion cells. Light responses were abolished by superfusion of Ringer's containing cobalt to synaptically isolate the cell by blocking all Ca(2+)-mediated transmitter release. Pressure pulses of GABA and glycine were delivered to an area that encompassed the dendritic field while receptor antagonists were applied through superfusion to characterize the direct inhibition onto the ganglion cell. Physiological results indicated that OFF-alpha cells did not have any GABAc receptor-activated currents, but did express currents mediated by ionotropic GABAA receptors and metabotropic GABAB receptors that were blocked by their specific antagonists bicuculline and CGP55845, respectively. The amplitudes of strychnine-sensitive glycine-activated currents were always larger than the currents elicited by GABA. Confocal optical sections of physiologically identified, sulforhodamine B-stained cells displayed the localization of glycine and GABAA receptor subunit labeling dispersed over the stained dendrites. Although scant labeling of GABAB receptors was found on the more distal dendrites, the majority of these receptors were congregated at the soma and on the proximal dendrites close to the soma. No GABAc receptor immunoreactivity was found anywhere on these cells. Therefore, the immunocytochemical results corroborated the physiological evidence demonstrating that OFF-alpha ganglion cells in the rabbit retina express functional GABAA, GABAB, and glycine receptors, but no GABAc receptors.

摘要

通过γ-氨基丁酸(GABA)和甘氨酸受体介导的抑制性突触传递在塑造视网膜神经元的兴奋性反应中起着关键作用。在完整的兔眼杯制备中,从神经节细胞获得全细胞记录,以将GABA和甘氨酸激活的电流与其在形态学上鉴定的神经节细胞上的特异性受体的存在相关联。基于在观察视网膜表面时其大的胞体选择α神经节细胞,并使用对亮点和暗点的反应来鉴定OFF-α神经节细胞。通过灌注含钴的林格氏液以阻断所有Ca(2+)介导的递质释放来突触隔离细胞,从而消除光反应。将GABA和甘氨酸的压力脉冲施加到包含树突场的区域,同时通过灌注应用受体拮抗剂以表征对神经节细胞的直接抑制作用。生理学结果表明,OFF-α细胞没有任何GABAc受体激活的电流,但确实表达了由离子型GABAA受体和代谢型GABAB受体介导的电流,它们分别被其特异性拮抗剂荷包牡丹碱和CGP55845阻断。士的宁敏感的甘氨酸激活电流的幅度总是大于GABA引起的电流。经生理学鉴定、磺基罗丹明B染色的细胞的共聚焦光学切片显示甘氨酸和GABAA受体亚基标记物的定位分散在染色的树突上。尽管在更远端的树突上发现GABAB受体的标记很少,但这些受体中的大多数聚集在胞体和靠近胞体的近端树突上。在这些细胞的任何部位都未发现GABAc受体免疫反应性。因此,免疫细胞化学结果证实了生理学证据,表明兔视网膜中的OFF-α神经节细胞表达功能性GABAA、GABAB和甘氨酸受体,但不表达GABAc受体。

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