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家禽中γ-谷氨酰谷氨酰脯氨酰胺对生长激素分泌的调节:促甲状腺激素释放激素作用的拮抗?

pGlutamylglutamylprolineamide modulation of growth hormone secretion in domestic fowl: antagonism of thyrotrophin-releasing hormone action?

作者信息

Harvey S, Trudeau V L, Ashworth R J, Cockle S M

机构信息

Department of Physiology, University of Alberta, Edmonton, Canada.

出版信息

J Endocrinol. 1993 Jul;138(1):137-47. doi: 10.1677/joe.0.1380137.

Abstract

Pyroglutamyglutamylprolineamide (pGlu-Glu-ProNH2) is a tripeptide with structural and immunological similarities to thyrotrophin-releasing hormone (TRH; pGlu-His-ProNH2). Since TRH stimulates GH secretion in domestic fowl, the possibility that pGlu-Glu-ProNH2 may also provoke GH release was investigated. Unlike TRH, pGlu-Glu-ProNH2 alone had no effect on GH release from incubated chicken pituitary glands and did not down-regulate pituitary TRH receptors. However, pGlu-Glu-ProNH2 suppressed TRH-induced GH release from pituitary glands incubated in vitro and competitively displaced [3H]methyl3-histidine2-TRH from pituitary membranes. Systemic injections of pGlu-Glu-ProNH2 had no significant effect on basal GH concentrations in conscious birds, but promptly lowered circulating GH levels in sodium-pentobarbitone anaesthetized fowl. Submaximal GH responses of conscious and anaesthetized birds to systemic TRH challenge were, however, potentiated by prior or concomitant administration of pGlu-Glu-ProNH2. These results demonstrate, for the first time, that pGlu-Glu-ProNH2 has biological activity, with inhibitory and stimulatory actions within the avian hypothalamo-pituitary axis. These results indicate that pGlu-Glu-ProNH2 may act as a TRH receptor antagonist within this axis.

摘要

焦谷氨酰谷氨酰脯氨酰胺(pGlu-Glu-ProNH2)是一种三肽,其结构和免疫学特性与促甲状腺激素释放激素(TRH;pGlu-His-ProNH2)相似。由于TRH可刺激家禽生长激素(GH)的分泌,因此研究了pGlu-Glu-ProNH2是否也能引发GH释放。与TRH不同,单独的pGlu-Glu-ProNH2对孵育的鸡垂体GH释放没有影响,也不会下调垂体TRH受体。然而,pGlu-Glu-ProNH2可抑制体外孵育的垂体中TRH诱导的GH释放,并能竞争性地将[3H]甲基-3-组氨酸-2-TRH从垂体膜上置换下来。全身注射pGlu-Glu-ProNH2对清醒鸟类的基础GH浓度没有显著影响,但能迅速降低戊巴比妥钠麻醉的家禽的循环GH水平。然而,清醒和麻醉鸟类对全身TRH刺激的亚最大GH反应,在预先或同时给予pGlu-Glu-ProNH2后会增强。这些结果首次证明,pGlu-Glu-ProNH2具有生物活性,在禽类下丘脑-垂体轴内具有抑制和刺激作用。这些结果表明,pGlu-Glu-ProNH2在该轴内可能作为TRH受体拮抗剂发挥作用。

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