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抑制素及相关肽。作用机制与分泌调节

Inhibin and related peptides. Mechanisms of action and regulation of secretion.

作者信息

Franchimont P, Hazee-Hagelstein M T, Jaspar J M, Charlet-Renard C, Demoulin A

机构信息

University of Liege, Radioimmunoassay Laboratory, Belgium.

出版信息

Rev Fr Gynecol Obstet. 1988 Oct;83(10):607-11.

PMID:3059435
Abstract

The structure of inhibin is known: it consists in a heterodimer constituted by one alpha and one beta subunits. The homodimer of beta A or the heterodimer beta A or the heterodimer beta A-beta B called activin A and B stimulates the release and the synthesis of FSH by gonadotrophs. Inhibin displays actions at hypophyseal, hypothalamic and gonadal levels. Produced by granulosa cells in female and by Sertoli cells in male, inhibin synthesis is stimulated by FSH, and reduced by hypophysectomy and progesterone. At the present time, there is no evidence for a signal from germinal cells to modify inhibin production. Inhibin secretion evolves with follicular maturation as aromatase activity whereas luteinization arrests its production. Nevertheless it seems to exist large difference in the regulation of inhibin secretion from one species to the other. Sperm inhibin levels are correlated with spermatozoa number. Its administration to the sheep induce either an anovulation or an increase of ovulation rate according to the scheme of treatment.

摘要

抑制素的结构已为人所知

它由一个α亚基和一个β亚基构成的异二聚体组成。βA的同二聚体或βA的异二聚体或被称为激活素A和B的βA-βB异二聚体可刺激促性腺细胞释放和合成促卵泡激素(FSH)。抑制素在垂体、下丘脑和性腺水平发挥作用。抑制素由女性的颗粒细胞和男性的支持细胞产生,其合成受FSH刺激,而垂体切除和孕酮会使其合成减少。目前,尚无证据表明生殖细胞会发出信号来改变抑制素的产生。抑制素的分泌随着卵泡成熟而变化,如同芳香化酶活性一样,而黄体化会使其分泌停止。然而,不同物种之间抑制素分泌的调节似乎存在很大差异。精子中的抑制素水平与精子数量相关。根据治疗方案向绵羊体内注射抑制素,会导致无排卵或排卵率增加。

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