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体内对鲎眼的传出神经支配使一种122千道尔顿的蛋白质磷酸化。

Efferent Innervation to Limulus Eyes In Vivo Phosphorylates a 122 kD Protein.

作者信息

Edwards S C, Andrews A W, Renninger G H, Wiebe E M, Battelle B A

出版信息

Biol Bull. 1990 Jun;178(3):267-278. doi: 10.2307/1541828.

Abstract

Efferent fibers innervate all of the eyes of the horseshoe crab, Limulus polyphemus. Driven by a circadian clock located in the central nervous system, the activity of the fibers at night is responsible for anatomical, biochemical, and physiological changes in the eyes, which increase their ability to detect and respond to light. We showed previously that octopamine, a putative efferent neurotransmitter, stimulates the phosphorylation of a 122 kD protein in in vitro preparations of both ventral and lateral eyes by means of a cAMP-dependent mechanism. We now report that phosphorylation of the 122 kD protein in the lateral eye is enhanced in vivo: (1) at night, in correlation with efferent nerve input activated by the circadian clock; and (2) during the day, in response to electrical stimulation of efferent axons. We show further that the 122 kD protein is enriched in, and may be restricted to, tissues that contain photoreceptors. We postulate that this protein is involved in the efferent-stimulated increase in retinal sensitivity.

摘要

传出纤维支配着美洲鲎(Limulus polyphemus)的所有眼睛。受位于中枢神经系统的昼夜节律时钟驱动,这些纤维在夜间的活动导致眼睛发生解剖学、生物化学和生理学变化,从而增强其检测和响应光线的能力。我们之前表明,章鱼胺(一种假定的传出神经递质)通过一种依赖cAMP的机制刺激腹侧眼和侧眼体外制剂中一种122 kD蛋白质的磷酸化。我们现在报告,侧眼中122 kD蛋白质的磷酸化在体内增强:(1)在夜间,与昼夜节律时钟激活的传出神经输入相关;(2)在白天,对传出轴突的电刺激有反应。我们进一步表明,122 kD蛋白质在含有光感受器的组织中富集,并且可能仅限于这些组织。我们推测这种蛋白质参与了传出刺激引起的视网膜敏感性增加。

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