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在青蛙视杆光感受器中,光诱导的cGMP浓度降低先于膜通透性的变化。

Light-induced decreases in cGMP concentration precede changes in membrane permeability in frog rod photoreceptors.

作者信息

Cote R H, Biernbaum M S, Nicol G D, Bownds M D

出版信息

J Biol Chem. 1984 Aug 10;259(15):9635-41.

PMID:6086642
Abstract

This study examines whether changes in cGMP concentration initiated by illumination of frog rod photoreceptors occur rapidly enough to implicate cGMP as an intermediate between rhodopsin activation in the disc membrane and permeability changes in the plasma membrane. Previous studies using whole retinas or isolated outer segments have provided conflicting evidence on the role of cGMP in the initial events of phototransduction. The rod photoreceptor preparation employed in this work consists of purified suspensions of outer segments still attached to the mitochondria-rich ellipsoid portion of the inner segment. These photoreceptors are known to retain normal electrophysiological responses to illumination and have cGMP levels comparable to those measured in the intact retina. When examined under several different conditions, changes in cGMP concentrations were found to occur as rapidly or more rapidly than the suppression of the membrane dark current. Subsecond changes in cGMP concentration were analyzed with a rapid quench apparatus and confirmed by comparison with a rapid freezing technique. In a 1 mM Ca2+ Ringer's solution, cGMP levels decrease to 65% of their final extent within 200 ms after bright illumination; changes in membrane dark current follow a similar time course. When the light intensity is decreased to 8000 rhodopsins bleached per rod per s, the light-induced cGMP decrease is completed within 50 ms, with 7 X 10(5) cGMP molecules hydrolyzed per rhodopsin bleached. During this time the dark current has not yet begun to change. Thus, under physiological conditions it is clear that changes in cGMP concentration precede permeability changes at the plasma membrane. The correlation of rapid changes in cGMP levels with changes in membrane current leave open the possibility that changes in cGMP concentration may be an obligatory step in the reaction sequence linking rhodopsin activation by light and the resultant decrease in sodium permeability of the plasma membrane.

摘要

本研究探讨了青蛙视杆光感受器受光照引发的环磷酸鸟苷(cGMP)浓度变化是否足够迅速,从而表明cGMP是盘膜中视紫红质激活与质膜通透性变化之间的中间体。此前使用整个视网膜或分离的外段进行的研究,在cGMP在光转导初始事件中的作用方面提供了相互矛盾的证据。本研究采用的视杆光感受器制剂由纯化的外段悬浮液组成,这些外段仍与富含线粒体的内段椭圆体部分相连。已知这些光感受器对光照保留正常的电生理反应,且cGMP水平与完整视网膜中测得的水平相当。在几种不同条件下进行检测时,发现cGMP浓度的变化与膜暗电流的抑制一样迅速或更快。用快速淬灭装置分析了cGMP浓度在亚秒级的变化,并通过与快速冷冻技术比较进行了确认。在1 mM Ca2+林格氏溶液中,强光照射后200毫秒内,cGMP水平降至最终水平的65%;膜暗电流的变化遵循类似的时间进程。当光强度降至每秒每根视杆8000个视紫红质被漂白时,光诱导的cGMP降低在50毫秒内完成,每漂白一个视紫红质有7×10(5)个cGMP分子被水解。在此期间,暗电流尚未开始变化。因此,在生理条件下,很明显cGMP浓度的变化先于质膜通透性的变化。cGMP水平的快速变化与膜电流变化的相关性,使得cGMP浓度变化可能是连接光激活视紫红质与质膜钠通透性降低的反应序列中的一个必要步骤这一可能性仍然存在。

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