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褪黑素在脊椎动物昼夜节律中的作用。

Melatonin's role in vertebrate circadian rhythms.

作者信息

Cassone V M

机构信息

Department of Biology, Texas A&M University, College Station 77843-3258, USA.

出版信息

Chronobiol Int. 1998 Sep;15(5):457-73. doi: 10.3109/07420529808998702.

Abstract

The circadian secretion of melatonin by the pineal gland and retinae is a direct output of circadian oscillators and of the circadian system in many species of vertebrates. This signal affects a broad array of physiological and behavioral processes, making a generalized hypothesis for melatonin function an elusive objective. Still, there are some common features of melatonin function. First, melatonin biosynthesis is always associated with photoreceptors and/or cells that are embryonically derived from photoreceptors. Second, melatonin frequently affects the perception of the photic environment and has as its site of action structures involved in vision. Finally, melatonin affects overt circadian function at least partially via regulation of the hypothalamic suprachiasmatic nucleus (SCN) or its homologues. The mechanisms by which melatonin affects circadian rhythms and other downstream processes are unknown, but they include interaction with a class of membrane-bound receptors that affect intracellular processes through guanosine triphosphate (GTP)-binding protein second messenger systems. Investigation of mechanisms by which melatonin affects its target tissues may unveil basic concepts of neuromodulation, visual system function, and the circadian clock.

摘要

松果体和视网膜昼夜分泌褪黑素是许多脊椎动物昼夜节律振荡器和昼夜节律系统的直接输出。该信号影响广泛的生理和行为过程,使得褪黑素功能的通用假设成为一个难以实现的目标。尽管如此,褪黑素功能仍存在一些共同特征。首先,褪黑素的生物合成总是与光感受器和/或胚胎起源于光感受器的细胞相关。其次,褪黑素经常影响对光环境的感知,其作用部位涉及视觉相关结构。最后,褪黑素至少部分通过调节下丘脑视交叉上核(SCN)或其同源物来影响明显的昼夜节律功能。褪黑素影响昼夜节律和其他下游过程的机制尚不清楚,但包括与一类通过鸟苷三磷酸(GTP)结合蛋白第二信使系统影响细胞内过程的膜结合受体相互作用。对褪黑素影响其靶组织机制的研究可能揭示神经调节、视觉系统功能和生物钟的基本概念。

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