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Speed, adaptation, and stability of the response to light in cone photoreceptors: The functional role of Ca-dependent modulation of ligand sensitivity in cGMP-gated ion channels

机译:锥体感光器中光响应的速度,适应性和稳定性:cGMP门控离子通道中钙依赖的配体敏感性调节的功能性作用

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摘要

The response of cone photoreceptors to light is stable and reproducible because of the exceptional regulation of the cascade of enzymatic reactions that link visual pigment (VP) excitation to the gating of cyclic GMP (cGMP)-gated ion channels (cyclic nucleotide–gated [CNG]) in the outer segment plasma membrane. Regulation is achieved in part through negative feedback control of some of these reactions by cytoplasmic free Ca2+. As part of the control process, Ca2+ regulates the phosphorylation of excited VP, the activity of guanylate cyclase, and the ligand sensitivity of the CNG ion channels. We measured photocurrents elicited by stimuli in the form of flashes, steps, and flashes superimposed on steps in voltage-clamped single bass cones isolated from striped bass retina. We also developed a computational model that comprises all the known molecular events of cone phototransduction, including all Ca-dependent controls. Constrained by available experimental data in bass cones and cone transduction biochemistry, we achieved an excellent match between experimental photocurrents and those simulated by the model. We used the model to explore the physiological role of CNG ion channel modulation. Control of CNG channel activity by both cGMP and Ca2+ causes the time course of the light-dependent currents to be faster than if only cGMP controlled their activity. Channel modulation also plays a critical role in the regulation of the light sensitivity and light adaptation of the cone photoresponse. In the absence of ion channel modulation, cone photocurrents would be unstable, oscillating during and at the offset of light stimuli.
机译:视锥光感受器对光的反应稳定且可重现,这是因为酶反应级联的特殊调节,该反应将视觉色素(VP)激发与环状GMP(cGMP)门控离子通道(环核苷酸门控[CNG] ])在外段质膜中。调节部分是通过细胞质游离Ca2 +对某些反应的负反馈控制来实现的。作为控制过程的一部分,Ca2 +调节激发的VP的磷酸化,鸟苷酸环化酶的活性以及CNG离子通道的配体敏感性。我们以与条纹状低音视网膜分离的电压钳制的单个低音锥中的闪光,阶梯和叠加在阶梯上的形式测量了由刺激引起的光电流。我们还开发了一种计算模型,其中包括视锥光转导的所有已知分子事件,包括所有依赖Ca的对照。受到低音锥和锥转导生物化学中可用实验数据的限制,我们在实验光电流与模型模拟的光电流之间实现了出色的匹配。我们使用该模型来探索CNG离子通道调节的生理作用。与仅由cGMP控制其活动相比,通过cGMP和Ca2 +对CNG通道活动的控制导致光依赖性电流的时间进程更快。通道调制在锥形光响应的光灵敏度和光适应性调节中也起着关键作用。在没有离子通道调制的情况下,视锥光电流会不稳定,在光刺激期间和偏移时会振荡。

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  • 作者

    Korenbrot, Juan I.;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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