Arginine vasopressin: Critical regulator of circadian homeostasis

IF 2.8 4区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Peptides Pub Date : 2024-04-23 DOI:10.1016/j.peptides.2024.171229
Yoshiaki Yamaguchi
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Abstract

Circadian rhythms optimally regulate numerous physiological processes in an organism and synchronize them with the external environment. The suprachiasmatic nucleus (SCN), the center of the circadian clock in mammals, is composed of multiple cell types that form a network that provides the basis for the remarkable stability of the circadian clock. Among the neuropeptides expressed in the SCN, arginine vasopressin (AVP) has attracted much attention because of its deep involvement in the function of circadian rhythms, as elucidated in particular by studies using genetically engineered mice. This review briefly summarizes the current knowledge on the peptidergic distribution and topographic neuronal organization in the SCN, the molecular mechanisms of the clock genes, and the relationship between the SCN and peripheral clocks. With respect to the physiological roles of AVP and AVP-expressing neurons, in addition to a sex-dependent action of AVP in the SCN, studies using AVP receptor knockout mice and mice genetically manipulated to alter the clock properties of AVP neurons are summarized here, highlighting its importance in maintaining circadian homeostasis and its potential as a target for therapeutic interventions.

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精氨酸加压素昼夜节律平衡的关键调节器
昼夜节律能以最佳方式调节生物体内的许多生理过程,并使其与外部环境同步。上丘脑核(SCN)是哺乳动物昼夜节律钟的中心,由多种细胞类型组成的网络为昼夜节律钟的显著稳定性奠定了基础。在 SCN 中表达的神经肽中,精氨酸血管加压素(AVP)备受关注,因为它深度参与了昼夜节律的功能,利用基因工程小鼠进行的研究尤其阐明了这一点。本综述简要总结了目前有关肽能分布和 SCN 神经元拓扑组织、时钟基因的分子机制以及 SCN 与外周时钟之间关系的知识。关于 AVP 和 AVP 表达神经元的生理作用,除了 AVP 在 SCN 中的作用具有性别依赖性外,本文还总结了利用 AVP 受体基因敲除小鼠和通过基因操作改变 AVP 神经元时钟特性的小鼠进行的研究,强调了 AVP 在维持昼夜节律平衡中的重要性及其作为治疗干预靶点的潜力。
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来源期刊
Peptides
Peptides 医学-生化与分子生物学
CiteScore
6.40
自引率
6.70%
发文量
130
审稿时长
28 days
期刊介绍: Peptides is an international journal presenting original contributions on the biochemistry, physiology and pharmacology of biological active peptides, as well as their functions that relate to gastroenterology, endocrinology, and behavioral effects. Peptides emphasizes all aspects of high profile peptide research in mammals and non-mammalian vertebrates. Special consideration can be given to plants and invertebrates. Submission of articles with clinical relevance is particularly encouraged.
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