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首页> 外文期刊>The journal of physiological sciences: JPS >Acidification of the synaptic cleft of cone photoreceptor terminal controls the amount of transmitter release, thereby forming the receptive field surround in the vertebrate retina.
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Acidification of the synaptic cleft of cone photoreceptor terminal controls the amount of transmitter release, thereby forming the receptive field surround in the vertebrate retina.

机译:锥体感光细胞末端突触间隙的酸化控制着发射器的释放量,从而在脊椎动物视网膜中形成了周围的感受野。

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摘要

In the vertebrate retina, feedback from horizontal cells (HCs) to cone photoreceptors plays a key role in the formation of the center-surround receptive field of retinal cells, which induces contrast enhancement of visual images. The mechanism underlying surround inhibition is not fully understood. In this review, we discuss this issue, focusing on our recent hypothesis that acidification of the synaptic cleft of the cone photoreceptor terminal causes this inhibition by modulating the Ca channel of the terminals. We present evidence that the acidification is caused by proton excretion from HCs by a vacuolar type H(+) pump. Recent publications supporting or opposing our hypothesis are discussed.
机译:在脊椎动物的视网膜中,从水平细胞(HCs)到视锥细胞感光细胞的反馈在视网膜细胞中心-周围感受野的形成中起关键作用,从而引起视觉图像的对比度增强。围绕抑制的机理尚不完全清楚。在这篇综述中,我们讨论这个问题,重点关注我们最近的假说,即锥体感光器末端突触间隙的酸化会通过调节末端的Ca通道而导致这种抑制。我们目前的证据表明,酸化是由液泡型H(+)泵从HCs的质子排泄引起的。讨论了支持或反对我们假设的最新出版物。

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