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催乳素:结构、受体与功能

Prolactin: structure, receptors, and functions.

作者信息

Chasseloup Fanny, Bernard Valérie, Chanson Philippe

机构信息

Physiologie et Physiopathologie Endocriniennes, Service d'Endocrinologie et des Maladies de la Reproduction, Centre de Référence des Maladies Rares de l'Hypophyse (HYPO), Hôpital Bicêtre, INSERM, Université Paris-Saclay, AP-HP, Le Kremlin-Bicêtre, 94275, France.

Department of Gynecology and Reproductive Medicine, CHU de Bordeaux, Bordeaux, F-33000, France.

出版信息

Rev Endocr Metab Disord. 2024 Dec;25(6):953-966. doi: 10.1007/s11154-024-09915-8. Epub 2024 Oct 30.

Abstract

Prolactin (PRL) is a 23-kDa protein synthesized and secreted by lactotroph cells of the anterior pituitary gland but also by other peripheral tissues. PRL binds directly to a unique transmembrane receptor (PRLR), and the JAK2/signal transducer and activator of transcription 5 (Stat5) pathway is considered the major downstream pathway for PRLR signaling. To a lesser extent, PRL may be cleaved into the shorter 16-kDa PRL, also called vasoinhibin, whose signaling is not fully known. According to rodent models of PRL signaling inactivation and the identification of human genetic alterations in PRL signaling, a growing number of biological processes are partly mediated by PRL or its downstream effectors. In this review, we focused on PRL structure and signaling and its canonical function in reproduction. In addition to regulating reproductive functions, PRL also plays a role in behavior, notably in initiating nurturing and maternal behavior. We also included recent insights into PRL function in several fields, including migraines, metabolic homeostasis, inflammatory and autoimmune disease, and cancer. Despite the complexity of understanding the many functions of PRL, new research in this field offers interesting perspectives on physiological and pathophysiological processes.

摘要

催乳素(PRL)是一种23千道尔顿的蛋白质,由垂体前叶的催乳细胞合成并分泌,但其他外周组织也可分泌。PRL直接与一种独特的跨膜受体(PRLR)结合,JAK2/信号转导及转录激活因子5(Stat5)途径被认为是PRLR信号传导的主要下游途径。在较小程度上,PRL可被切割成较短的16千道尔顿PRL,也称为血管抑制素,其信号传导尚不完全清楚。根据PRL信号失活的啮齿动物模型以及PRL信号中人类基因改变的鉴定,越来越多的生物学过程部分由PRL或其下游效应器介导。在本综述中,我们重点关注PRL的结构、信号传导及其在生殖中的典型功能。除了调节生殖功能外,PRL在行为中也发挥作用,尤其是在启动养育和母性行为方面。我们还纳入了对PRL在几个领域功能的最新见解,包括偏头痛、代谢稳态、炎症和自身免疫性疾病以及癌症。尽管理解PRL的多种功能很复杂,但该领域的新研究为生理和病理生理过程提供了有趣的观点。

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