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Novel Form of Adaptation in Mouse Retinal Rods Speeds Recovery of Phototransduction

机译:小鼠视网膜棒适应的新形式加快了光转导的恢复。

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摘要

Photoreceptors of the retina adapt to ambient light in a manner that allows them to detect changes in illumination over an enormous range of intensities. We have discovered a novel form of adaptation in mouse rods that persists long after the light has been extinguished and the rod's circulating dark current has returned. Electrophysiological recordings from individual rods showed that the time that a bright flash response remained in saturation was significantly shorter if the rod had been previously exposed to bright light. This persistent adaptation did not decrease the rate of rise of the response and therefore cannot be attributed to a decrease in the gain of transduction. Instead, this adaptation was accompanied by a marked speeding of the recovery of the response, suggesting that the step that rate-limits recovery had been accelerated. Experiments on knockout rods in which the identity of the rate-limiting step is known suggest that this adaptive acceleration results from a speeding of G protein/effector deactivation.
机译:视网膜的光感受器以使其能够在很大的强度范围内检测照明变化的方式适应环境光。我们发现了一种新的适应形式,可以在老鼠的杆上熄灭,并且这种光在灯熄灭并且杆的循环暗电流返回后还可以持续很长时间。来自单个棒的电生理记录表明,如果先前已将棒暴露在明亮的光线下,明亮的闪光响应保持饱和的时间会大大缩短。这种持续的适应性不会降低反应的上升速度,因此不能归因于转导增益的降低。取而代之的是,这种适应性伴随着反应恢复的显着加快,这表明限速恢复的步骤已经加快。在限速步骤相同的基因敲除杆上进行的实验表明,这种适应性加速度是由G蛋白/效应子失活的速度导致的。

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