[Photoperiodic control of melatonin synthesis in fish pineal and retina].

Laurence Besseau, Robin Vuilleumier, Sandrine Sauzet, Gilles Boeuf, Jack Falcón
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引用次数: 3

Abstract

Melatonin is the time-keeping molecule of vertebrates. The daily and annual variations of its rhythmic production allow synchronizing physiological functions and behaviours to the variations of the environment. In fish, melatonin is produced by the photoreceptor cells of the retina and pineal organ. It is also synthesized by other retinal cell types of the inner nuclear and ganglion cell layers. In most of the species investigated, the melatonin rhythm displays a high-at-night profile, resulting from the circadian control of the arylalkylamine N-acetyltranferase (AANAT) activity; AANAT is the penultimate enzyme in the melatonin biosynthesis pathway. Some fish species escape the high-at-night rule in the retina, and the rhythm displays a high-at-day profile, intermediate situations being sometimes observed. This review summarizes our current knowledge on the molecular and cellular mechanisms of the rhythmic control of production of an important circadian clock messenger, underlying their plasticity.

鱼类松果体和视网膜褪黑素合成的光周期调控
褪黑素是脊椎动物的计时分子。其节律性生产的日变化和年变化使生理功能和行为与环境变化同步。在鱼类中,褪黑素是由视网膜和松果体器官的感光细胞产生的。它也由视网膜内核细胞层和神经节细胞层的其他细胞类型合成。在大多数被调查的物种中,褪黑素节律在夜间表现出较高的特征,这是由于芳基烷基胺n -乙酰转移酶(AANAT)活性的昼夜节律控制所致;AANAT是褪黑素生物合成途径中的倒数第二个酶。一些鱼类逃避了视网膜夜间活动频繁的规律,而节律显示出白天活动频繁的特征,有时会观察到中间情况。这篇综述总结了我们目前对一种重要的生物钟信使产生的节律性控制的分子和细胞机制的了解,并揭示了它们的可塑性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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