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家禽中甲状腺对生长激素分泌的抑制作用:三碘甲状腺原氨酸诱导垂体膜上促甲状腺激素释放激素结合位点的下调。

Thyroidal inhibition of growth hormone secretion in fowl: tri-iodothyronine-induced down-regulation of thyrotrophin-releasing hormone-binding sites on pituitary membranes.

作者信息

Harvey S, Baidwan J S

机构信息

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

出版信息

J Mol Endocrinol. 1990 Apr;4(2):127-34. doi: 10.1677/jme.0.0040127.

Abstract

The number, but not affinity, of binding sites for [3H]3-methyl-histidine2-TRH ([3H]Me-TRH) on chicken adenohypophysial plasma membranes was increased in chickens made hypothyroid by goitrogen (methimazole) treatment (50 mg/kg per day for 7 days), which also increased circulating GH concentrations. Daily i.p. injection of thyroxine (T4; 100 micrograms/kg for 7 days) had no effect on [3H]Me-TRH binding to pituitary membranes, although it suppressed endogenous GH secretion. Binding of [3H]Me-TRH to pituitary caudal lobe membranes was, however, suppressed by tri-iodothyronine (T3) injected chronically (100 micrograms/kg per day, i.p., for 7 days) or acutely (100 micrograms/kg, 2 h before being killed). The suppression of [3H]Me-TRH binding and inhibition of GH secretion following T3 administration was dose related. Binding of [3H]Me-TRH to caudal lobe membranes was also suppressed following the incubation of pituitary glands with T3 in vitro, and the response was both dose and time related. These results suggest that T3 inhibits GH secretion in fowl by a down-regulation of pituitary TRH receptors. However, other mechanisms are involved in thyroidal inhibition of GH release in birds, since T4 had no effects on [3H]Me-TRH binding yet suppressed GH secretion in vivo.

摘要

通过给予甲状腺肿诱发剂(甲巯咪唑,每天50mg/kg,持续7天)使鸡甲状腺功能减退,鸡腺垂体细胞膜上[3H]3-甲基组氨酸2-促甲状腺激素释放激素([3H]Me-TRH)的结合位点数量增加,但亲和力不变,同时循环中的生长激素(GH)浓度也升高。每天腹腔注射甲状腺素(T4,100μg/kg,持续7天)对[3H]Me-TRH与垂体细胞膜的结合没有影响,尽管它抑制了内源性GH的分泌。然而,长期(每天腹腔注射100μg/kg,持续7天)或急性(处死前2小时注射100μg/kg)注射三碘甲状腺原氨酸(T3)可抑制[3H]Me-TRH与垂体尾叶细胞膜的结合。给予T3后对[3H]Me-TRH结合的抑制和对GH分泌的抑制与剂量相关。在体外将垂体与T3孵育后,[3H]Me-TRH与尾叶细胞膜的结合也受到抑制,且反应与剂量和时间相关。这些结果表明,T3通过下调垂体促甲状腺激素释放激素(TRH)受体来抑制家禽的GH分泌。然而,鸟类甲状腺对GH释放的抑制还涉及其他机制,因为T4对[3H]Me-TRH结合没有影响,但在体内却抑制了GH分泌。

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