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鲎腹侧光感受器中Na+/Ca2+交换的生理作用。

Physiological roles of Na+/Ca2+ exchange in Limulus ventral photoreceptors.

作者信息

O'Day P M, Gray-Keller M P, Lonergan M

机构信息

Institute of Neuroscience, University of Oregon, Eugene 97403.

出版信息

J Gen Physiol. 1991 Feb;97(2):369-91. doi: 10.1085/jgp.97.2.369.

Abstract

In previous work we have presented evidence for electrogenic Na+/Ca2+ exchange in Limulus ventral photoreceptors (1989. J. Gen. Physiol. 93:473-492). This article assesses the contributions to photoreceptor physiology from Na+/Ca2+ exchange. Four separate physiological processes were considered: maintenance of resting sensitivity, light-induced excitation, light adaptation, and dark adaptation. (a) Resting sensitivity: reduction of [Na+]o caused a [Ca2+]o-dependent reduction in light sensitivity and a speeding of the time courses of the responses to individual test flashes; this effect was dependent on the final value to which [Na+]o was reduced. The desensitization caused by Na+ reduction was dependent on the initial sensitivity of the photoreceptor; in fully dark-adapted conditions no desensitization was observed; in light-adapted conditions, extensive desensitization was observed. (b) Excitation: Na+ reduction in fully dark-adapted conditions caused a Ca2+o-dependent depolarizing phase in the receptor potential that persisted beyond the stimulus duration and was evoked by a bright adapting flash. (c) Light adaptation: the degree of desensitization induced by a bright adapting flash was Na+o dependent, being larger with lower [Na+]o. Na+ reduction enhanced light adaptation only at intensities brighter than 4 x 10(-6) W/cm2. In addition to being Na+o dependent, light adaptation was Ca2+o dependent, being greater at higher [Ca2+]o. (d) Dark adaptation: the recovery of light sensitivity after adapting illumination was Na+o dependent. Dark adaptation after bright illumination in voltage-clamped and in unclamped conditions was faster in normal-Na+ saline than in reduced Na+ saline. The final sensitivity to which photoreceptors recovered was lower in reduced-Na+ saline when bright adapting illumination was used. The results suggest the involvement of Na+/Ca2+ exchange in each of these physiological processes. Na+/Ca2+ exchange may contribute to these processes by counteracting normal elevations in [Ca2+]i.

摘要

在之前的工作中,我们已经给出证据表明鲎腹侧光感受器中存在电致Na⁺/Ca²⁺交换(1989年。《普通生理学杂志》93:473 - 492)。本文评估了Na⁺/Ca²⁺交换对光感受器生理学的贡献。考虑了四个不同的生理过程:静息敏感性的维持、光诱导兴奋、光适应和暗适应。(a)静息敏感性:降低[Na⁺]ₒ会导致光敏感性以[Ca²⁺]ₒ依赖的方式降低,并且对单个测试闪光的反应时间进程加快;这种效应取决于[Na⁺]ₒ降低到的最终值。Na⁺降低引起的脱敏取决于光感受器的初始敏感性;在完全暗适应条件下未观察到脱敏;在光适应条件下,观察到广泛的脱敏。(b)兴奋:在完全暗适应条件下降低Na⁺会导致感受器电位中出现Ca²⁺ₒ依赖的去极化阶段,该阶段在刺激持续时间之后仍然存在,并由明亮的适应闪光诱发。(c)光适应:明亮的适应闪光诱导的脱敏程度依赖于Na⁺ₒ,[Na⁺]ₒ越低,脱敏程度越大。仅在强度高于4×10⁻⁶W/cm²时,降低Na⁺才会增强光适应。除了依赖于Na⁺ₒ之外,光适应还依赖于Ca²⁺ₒ,[Ca²⁺]ₒ越高,光适应越强。(d)暗适应:适应光照后光敏感性的恢复依赖于Na⁺ₒ。在电压钳制和非钳制条件下,明亮光照后的暗适应在正常Na⁺盐溶液中比在降低Na⁺的盐溶液中更快。当使用明亮的适应光照时,在降低Na⁺的盐溶液中光感受器恢复到的最终敏感性较低。结果表明Na⁺/Ca²⁺交换参与了这些生理过程中的每一个。Na⁺/Ca²⁺交换可能通过抵消[Ca²⁺]i的正常升高来对这些过程做出贡献。

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