Shields Colleen R, Lukasiewicz Peter D
Department of Ophthalmology and Visual Sciences, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Neurophysiol. 2003 May;89(5):2449-58. doi: 10.1152/jn.00916.2002. Epub 2002 Nov 13.
The inhibitory surround signal in retinal ganglion cells is usually attributed to lateral horizontal cell signaling in the outer plexiform layer (OPL). However, recent evidence suggests that lateral inhibition at the inner plexiform layer (IPL) also contributes to the ganglion cell receptive field surround. Although amacrine cell input to ganglion cells mediates a component of this lateral inhibition, it is not known if presynaptic inhibition to bipolar cell terminals also contributes to surround signaling. We investigated the role of presynaptic inhibition by recording from bipolar cells in the salamander retinal slice. TTX reduced light-evoked GABAergic inhibitory postsynaptic currents (IPSCs) in bipolar cells, indicating that presynaptic pathways mediate lateral inhibition in the IPL. Photoreceptor and bipolar cell synaptic transmission were unaffected by TTX, indicating that its main effect was in the IPL. To rule out indirect actions of TTX, we bypassed lateral signaling in the outer retina by either electrically stimulating bipolar cells or by puffing kainate (KA) directly onto amacrine cell processes lateral to the recorded cell. In bipolar and ganglion cells, TTX suppressed laterally evoked IPSCs, demonstrating that both pre- and postsynaptic lateral signaling in the IPL depended on action potentials. By contrast, locally evoked IPSCs in both cell types were only weakly suppressed by TTX, indicating that local inhibition was not as dependent on action potentials. Our results show a TTX-sensitive lateral inhibitory input to bipolar cell terminals, which acts in concert with direct lateral inhibition to give rise to the GABAergic surround in ganglion cells.
视网膜神经节细胞中的抑制性周边信号通常归因于外网状层(OPL)中的水平细胞侧向信号传导。然而,最近的证据表明,内网状层(IPL)的侧向抑制也对神经节细胞感受野周边有贡献。虽然无长突细胞向神经节细胞的输入介导了这种侧向抑制的一部分,但尚不清楚对双极细胞终末的突触前抑制是否也对周边信号有贡献。我们通过记录蝾螈视网膜切片中的双极细胞来研究突触前抑制的作用。河豚毒素(TTX)减少了双极细胞中光诱发的γ-氨基丁酸(GABA)能抑制性突触后电流(IPSCs),表明突触前通路介导了IPL中的侧向抑制。光感受器和双极细胞的突触传递不受TTX影响,表明其主要作用在IPL。为了排除TTX的间接作用,我们通过电刺激双极细胞或直接向记录细胞外侧的无长突细胞突起吹入 kainate(KA)来绕过外视网膜中的侧向信号传导。在双极细胞和神经节细胞中,TTX抑制了侧向诱发的IPSCs,表明IPL中突触前和突触后的侧向信号传导都依赖于动作电位。相比之下,两种细胞类型中局部诱发的IPSCs仅被TTX微弱抑制,表明局部抑制对动作电位的依赖性较小。我们的结果显示了对双极细胞终末的TTX敏感的侧向抑制性输入,它与直接侧向抑制协同作用,在神经节细胞中产生GABA能周边。