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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Proton-mediated feedback inhibition of presynaptic calcium channels at the cone photoreceptor synapse.
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Proton-mediated feedback inhibition of presynaptic calcium channels at the cone photoreceptor synapse.

机译:质子介导的锥体锥体感光突触前突触前钙通道的反馈抑制。

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Generation of center-surround antagonistic receptive fields in the outer retina occurs via inhibitory feedback modulation of presynaptic voltage-gated calcium channels in cone photoreceptor synaptic terminals. Both conventional and unconventional neurotransmitters, as well as an ephaptic effect, have been proposed, but the intercellular messaging that mediates the inhibitory feedback signal from postsynaptic horizontal cells (HCs) to cones remains unknown. We examined the possibility that proton concentration in the synaptic cleft is regulated by HCs and that it carries the feedback signal to cones. In isolated, dark-adapted goldfish retina, we assessed feedback in the responses of HCs to light and found that strengthened pH buffering reduced both rollback and the depolarization to red light. In zebrafish retinal slices loaded with Fluo-4, depolarization with elevated K(+) increased Ca signals in the synaptic terminals of cone photoreceptors. Kainic acid, which depolarizes HCs but has no direct effect on cones, depressed the K(+)-induced Ca signal, whereas CNQX, which hyperpolarizes HCs, increased the Ca signals, suggesting that polarization of HCs alters inhibitory feedback to cones. We found that these feedback signals were blocked by elevated extracellular pH buffering, as well as amiloride and divalent cations. Voltage clamp of isolated HCs revealed an amiloride-sensitive conductance that could mediate modulation of cleft pH dependent on the membrane potential of these postsynaptic cells.
机译:外部视网膜中中心周围的拮抗感受野的产生是通过锥体光感受器突触末端中突触前电压门控钙通道的抑制性反馈调制而发生的。既有常规的神经递质,也有非常规的神经递质,但都被提出来,但目前尚不清楚将介导从突触后水平细胞(HCs)传递到视锥细胞的抑制性反馈信号的细胞间信息传递。我们检查了突触间隙中质子浓度受HCs调节并将其反馈信号传递到视锥细胞的可能性。在孤立的,暗适应的金鱼视网膜中,我们评估了HC对光的反应中的反馈,发现增强的pH缓冲可减少回滚和对红光的去极化。在斑马鱼视网膜切片装载Fluo-4,升高的K(+)去极化增加视锥细胞感光突触末端的Ca信号。海藻酸使HCs去极化,但对视锥细胞没有直接作用,抑制了K(+)诱导的Ca信号,而使HCs超极化的CNQX增加了Ca信号,表明HCs的极化改变了对视锥细胞的抑制性反馈。我们发现这些反馈信号被升高的细胞外pH缓冲以及阿米洛利和二价阳离子所阻断。分离的HCs的电压钳位显示出阿米洛利敏感的电导,其可以介导依赖于这些突触后细胞的膜电位的c裂pH调节。

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