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Modulation of rod photoreceptor output by HCN1 channels is essential for regular mesopic cone vision

机译:HCN1通道对棒状光感受器输出的调节对于常规中视锥视至关重要

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Retinal photoreceptors permit visual perception over a wide range of lighting conditions. Rods work best in dim, and cones in bright environments, with considerable functional overlap at intermediate (mesopic) light levels. At many sites in the outer and inner retina where rod and cone signals interact, gap junctions, particularly those containing Connexin36, have been identified. However, little is known about the dynamic processes associated with the convergence of rod and cone system signals into ON- and OFF-pathways. Here we show that proper cone vision under mesopic conditions requires rapid adaptational feedback modulation of rod output via hyperpolarization-activated and cyclic nucleotide-gated channels 1. When these channels are absent, sustained rod responses following bright light exposure saturate the retinal network, resulting in a loss of downstream cone signalling. By specific genetic and pharmacological ablation of key signal processing components, regular cone signalling can be restored, thereby identifying the sites involved in functional rod–cone interactions.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:视网膜感光器可在广泛的照明条件下实现视觉感知。杆在昏暗的环境中效果最佳,在明亮的环境中的视锥效果最好,在中等(近视)光照水平下功能重叠很大。在外部和内部视网膜的许多位置,杆和锥信号相互作用,已经确定了间隙连接,特别是那些含有连接蛋白36的连接。但是,关于与杆和锥系统信号收敛到ON和OFF路径相关的动态过程知之甚少。在这里,我们表明,在中视条件下适当的视锥视力需要通过超极化激活和环状核苷酸门控通道1对棒输出进行快速的适应性反馈调制。当这些通道不存在时,在强光照射后持续的棒响应会使视网膜网络饱和,从而导致下游锥体信号的丢失。通过关键信号处理组件的特定遗传和药理学消融,可以恢复规则的视锥信号,从而确定参与功能性杆-锥相互作用的位点。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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