Tatsukawa T, Hirasawa H, Kaneko A, Kaneda M
Department of Physiology, Keio University School of Medicine, Shinjuku-ku, Tokyo, Japan.
Vis Neurosci. 2005 May-Jun;22(3):317-24. doi: 10.1017/S0952523805223076.
The negative feedback from horizontal cells to cone photoreceptors contributes to the formation of the receptive-field surround in cone photoreceptors. Recently, studies on the modulation of voltage-gated Ca(2+) currents in cone photoreceptors have led to great progress in our understanding of the mechanism of horizontal-cone feedback. Another highly probable hypothesis is that GABA mediates this feedback. This hypothesis is supported by the facts that cone photoreceptors respond to GABA and that horizontal cells release GABA. However, GABA-mediated synaptic inputs from horizontal cells to cone photoreceptors have not been demonstrated. In the present study, we examined whether cone photoreceptors receive GABAergic inputs from horizontal cells using a slice patch technique in the turtle retina. When 1 mM of GABA was applied to the cone photoreceptors, GABA-induced currents were activated. GABA-induced currents reversed their polarity at the equilibrium potential of Cl-. The application of 30 microM of SR95531, an antagonist of GABAA receptors, alone did not produce any change in the holding currents. When 200 microM of pentobarbital was introduced to potentiate the GABAergic inputs to the cone photoreceptors, however, the inhibitory action of SR95531 on GABAergic inputs became detectable. The amplitude of the GABAergic inputs, potentiated by pentobarbital, increased when the horizontal cells were depolarized by the application of 20 microM of kainate, while the amplitude decreased when the horizontal cells were hyperpolarized by the application of 10 microM of CNQX. When the cone photoreceptors were voltage clamped at a potential at which the voltage-gated Ca(2+) current was inactive, horizontal-cone feedback was not observed. However, the horizontal-cone feedback became detectable when the GABAergic inputs to the cone photoreceptors were potentiated by pentobarbital. We concluded that the contribution of GABAergic inputs from horizontal cells to cone pedicles in the formation of the receptive-field surround in cone photoreceptors is very limited but that the modulation of voltage-gated Ca(2+) currents in cone photoreceptors is a physiologically relevant mechanism for horizontal-cone feedback.
水平细胞向视锥光感受器发出的负反馈有助于视锥光感受器中感受野周围区域的形成。最近,对视锥光感受器中电压门控钙(Ca2+)电流调节的研究,使我们对水平细胞 - 视锥反馈机制的理解取得了很大进展。另一个极有可能的假说是,γ-氨基丁酸(GABA)介导这种反馈。视锥光感受器对GABA有反应以及水平细胞释放GABA这些事实支持了这一假说。然而,尚未证实从水平细胞到视锥光感受器存在GABA介导的突触输入。在本研究中,我们使用海龟视网膜的脑片膜片钳技术,研究视锥光感受器是否接受来自水平细胞的GABA能输入。当向视锥光感受器施加1 mM的GABA时,可激活GABA诱导的电流。GABA诱导的电流在Cl-的平衡电位处反转其极性。单独应用30 μM的GABAA受体拮抗剂SR95531,对钳制电流没有产生任何变化。然而,当引入200 μM的戊巴比妥以增强对视锥光感受器的GABA能输入时,SR95531对GABA能输入的抑制作用变得可检测到。由戊巴比妥增强的GABA能输入的幅度,在通过施加20 μM的 kainate使水平细胞去极化时增加,而在通过施加10 μM的CNQX使水平细胞超极化时幅度减小。当视锥光感受器在电压门控钙(Ca2+)电流失活的电位下进行电压钳制时,未观察到水平细胞 - 视锥反馈。然而,当通过戊巴比妥增强对视锥光感受器的GABA能输入时,水平细胞 - 视锥反馈变得可检测到。我们得出结论,在视锥光感受器感受野周围区域的形成过程中,水平细胞的GABA能输入对视锥小足的贡献非常有限,但视锥光感受器中电压门控钙(Ca2+)电流的调节是水平细胞 - 视锥反馈的一种生理相关机制。