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在鲎腹侧光感受器中,锂(Li⁺)诱导的阻断后,肌醇对兴奋的挽救作用。

Rescue of excitation by inositol following Li(+)-induced block in Limulus ventral photoreceptors.

作者信息

Johnson E C, Gray-Keller M P, O'Day P M

机构信息

Institute of Neuroscience, University of Oregon, Eugene 97403-1254, USA.

出版信息

Vis Neurosci. 1998 Jan-Feb;15(1):105-12. doi: 10.1017/s0952523898151076.

Abstract

The phosphoinositide (PI) intracellular signaling pathway, which triggers Ca2+ release from intracellular stores, appears to be a central feature of phototransduction in most invertebrate species studied. Procedures designed to inhibit PI-pathway reactions cause suppression of excitation to dim lights. However, in Limulus photoreceptors, responses to bright stimuli are in fact enhanced by some of these procedures, suggesting that PI metabolism is not obligatory for light-induced excitation. Other studies, however, suggest that Ca2+ release is obligatory for excitation. We studied this issue by examining the effects of PI-pathway inhibitor, Li+, on electrophysiological responses to light in Limulus photoreceptors. Li+ is reported to cause depletion of intracellular PI-pathway intermediate, inositol; and it offers the pharmacological advantage that its block can be bypassed by introducing exogenous inositol. Introduction of Li+ caused a very slowly developing but complete suppression of responses to dim stimuli. In contrast, Li+ caused a rapidly developing but partial suppression of responses to bright stimuli. Li(+)-induced suppression was reversed by exogenous introduction of inositol. In addition, inositol prevented Li(+)-induced suppression of excitation. Li+ enhanced light adaptation (light-induced desensitization) but slowed response deactivation, indicating a difference in the processes underlying these phenomena. Li+ slowed dark adaptation, the recovery of sensitivity following light adaptation. All of these effects were prevented or rescued by extracellularly applied inositol, suggesting the presence of a transmembrane inositol transport system. The overall results suggest that PI-dependent signaling is central and obligatory for excitation in Limulus, at least for responses to dim to moderate illumination. The failure of Li+ to suppress bright light-induced excitation completely may be due to a failure of Li+ to block PI metabolism completely, as in other systems; however, it may point to a parallel, PI-independent excitation pathway possessing very low light sensitivity when PI metabolism is inhibited.

摘要

磷酸肌醇(PI)细胞内信号通路可触发细胞内储存库释放Ca2+,这似乎是大多数已研究的无脊椎动物光转导的一个核心特征。旨在抑制PI通路反应的程序会导致对暗光的兴奋受到抑制。然而,在鲎的光感受器中,这些程序中的一些实际上会增强对强光刺激的反应,这表明PI代谢对于光诱导的兴奋并非必不可少。然而,其他研究表明Ca2+释放对于兴奋是必不可少的。我们通过研究PI通路抑制剂Li+对鲎光感受器对光的电生理反应的影响来探讨这个问题。据报道,Li+会导致细胞内PI通路中间体肌醇的消耗;并且它具有药理学优势,即通过引入外源性肌醇可以绕过其阻断作用。引入Li+会导致对暗光刺激的反应出现非常缓慢但完全的抑制。相比之下,Li+会导致对强光刺激的反应出现快速但部分的抑制。Li+诱导的抑制可通过外源性引入肌醇来逆转。此外,肌醇可防止Li+诱导的兴奋抑制。Li+增强了光适应(光诱导的脱敏)但减缓了反应失活,表明这些现象背后的过程存在差异。Li+减缓了暗适应,即光适应后敏感性的恢复。所有这些效应都可通过细胞外应用肌醇来预防或挽救,这表明存在跨膜肌醇转运系统。总体结果表明,PI依赖性信号传导对于鲎的兴奋是核心且必不可少的,至少对于对暗光到中等光照的反应是如此。Li+未能完全抑制强光诱导的兴奋可能是由于Li+未能像在其他系统中那样完全阻断PI代谢;然而,这可能指向一条平行的、PI非依赖性的兴奋通路,当PI代谢受到抑制时,其光敏感性非常低。

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