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刺激诱导的脑啡肽原、催产素和血管加压素的耗竭以及脑啡肽原与垂体后叶激素体外释放的相互作用。

Stimulus-induced depletion of pro-enkephalins, oxytocin and vasopressin and pro-enkephalin interaction with posterior pituitary hormone release in vitro.

作者信息

Leng G, Bicknell R J, Brown D, Bowden C, Chapman C, Russell J A

机构信息

Department of Neurobiology, Babraham Institute, Cambridge, UK.

出版信息

Neuroendocrinology. 1994 Dec;60(6):559-66. doi: 10.1159/000126797.

Abstract

The secretion of oxytocin (OXT) from the neurohypophysis is modulated by the actions of opioids acting via kappa-receptors. The vasopressin (AVP)-containing nerve terminals in the neurohypophysis contain the kappa-opioid agonist dynorphin, but endogenous opioid restraint of OXT secretion is observed even when AVP release is not activated, suggesting that another source of opioids is responsible for modulating OXT secretion. We now report that acute stimulation of the rat neural lobe in vivo results in depletion of the neural lobe content of OXT, AVP, dynorphin A1-17, dynorphin A1-8 and metenkephalin (Met-Enk). The dynorphin content is depleted to a similar extent as that of OXT and AVP; a correlation analysis suggests that while most dynorphin is co-secreted with AVP, a significant portion is co-secreted with OXT, consistent with a co-localisation of dynorphin with OXT. Met-Enk was depleted to a lesser extent than either hormone, consistent with a partial localisation in non-releasable pools. However, depletion of Met-Enk was also observed following naloxone-precipitated opioid withdrawal accompanying selective hypersecretion of OXT, suggesting co-secretion of OXT and Met-Enk. Met-Enk is a mu-opioid receptor agonist, but extended forms of Met-Enk, as we now report, are active at neurohypophysial kappa-receptors.

摘要

神经垂体中催产素(OXT)的分泌受通过κ受体起作用的阿片类物质的调节。神经垂体中含有血管加压素(AVP)的神经末梢含有κ阿片受体激动剂强啡肽,但即使AVP释放未被激活,也观察到内源性阿片类物质对OXT分泌的抑制作用,这表明阿片类物质的另一个来源负责调节OXT分泌。我们现在报告,对大鼠神经叶进行急性体内刺激会导致神经叶中OXT、AVP、强啡肽A1-17、强啡肽A1-8和甲硫氨酸脑啡肽(Met-Enk)的含量减少。强啡肽的含量减少程度与OXT和AVP相似;相关性分析表明,虽然大多数强啡肽与AVP共同分泌,但有相当一部分与OXT共同分泌,这与强啡肽与OXT的共定位一致。Met-Enk的减少程度低于任何一种激素,这与它部分定位于不可释放池一致。然而,在纳洛酮诱导的阿片类物质戒断伴OXT选择性分泌过多后,也观察到Met-Enk的减少,提示OXT和Met-Enk共同分泌。Met-Enk是一种μ阿片受体激动剂,但正如我们现在所报告的,Met-Enk的延伸形式在神经垂体κ受体上具有活性。

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