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大鼠视网膜视杆光感受器中钙敏感的转导链下调

Calcium-sensitive downregulation of the transduction chain in rod photoreceptors of the rat retina.

作者信息

Knopp Andreas, Rüppel Hartmann

机构信息

Max-Volmer-Institut of Biophysical Chemistry, Technical University Berlin, Berlin, Germany.

出版信息

Biophys J. 2006 Aug 1;91(3):1078-89. doi: 10.1529/biophysj.106.082271. Epub 2006 May 12.

Abstract

In vertebrate rod outer segments phototransduction is suggested to be modulated by intracellular Ca. We aimed at verifying this hypothesis by recording saturated photosignals in the rat retina after single and double flashes of light and determining the time t(c) to the beginning of the signal recovery. The time course of Ca(i) after a flash was calculated from a change of the spatial Ca(2+) concentration profile recorded in the space between the rods. After single flashes t(c) increased linearly with the logarithm of flash intensity, confirming the assumption that t(c) is determined by deactivation of a single species X* in the phototransduction cascade. The photoresponse was shortened up to 45% if the test flash was preceded by a conditioning preflash. The shortening depended on the reduction of Ca(i) induced by the preflash. The data suggest that the phototransduction gain determining the amount of activated X* is regulated by a Ca(i)-dependent mechanism in a short time period (<800 ms) after the test flash. Lowering of Ca(i) by a preflash reduced the gain up to 20% compared to its value in a dark-adapted rod. The relation between phototransduction gain and Ca(i) revealed a K(1/2) value close to the dark level of Ca(i).

摘要

在脊椎动物的视杆细胞外段,光转导被认为受细胞内钙的调节。我们旨在通过记录大鼠视网膜在单次和双次闪光后的饱和光信号,并确定信号恢复开始的时间t(c)来验证这一假设。闪光后Ca(i)的时间进程是根据视杆细胞间空间中记录的空间Ca(2+)浓度分布的变化来计算的。单次闪光后,t(c)随闪光强度的对数呈线性增加,这证实了t(c)由光转导级联中单一物质X的失活所决定的假设。如果测试闪光之前有一个条件预闪光,光反应可缩短达45%。缩短程度取决于预闪光引起的Ca(i)的降低。数据表明,在测试闪光后的短时间内(<800毫秒),决定活化X量的光转导增益受Ca(i)依赖性机制调节。与暗适应视杆细胞相比,预闪光使Ca(i)降低,增益降低达20%。光转导增益与Ca(i)之间的关系显示,K(1/2)值接近Ca(i)的暗水平。

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Adaptation in vertebrate photoreceptors.脊椎动物光感受器中的适应性。
Physiol Rev. 2001 Jan;81(1):117-151. doi: 10.1152/physrev.2001.81.1.117.

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