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促黄体生成素亚基及游离α亚基的分泌动力学,以及促性腺激素释放激素的作用

Kinetics of secretion of luteinizing hormone subunits and free alpha, and effects of gonadotropin releasing hormone.

作者信息

Vogel D L, Rowland J A, Sherins R J

机构信息

Section on Reproductive Endocrinology, National Institute of Child Health and Human Development, Bethesda, Maryland 20892.

出版信息

J Androl. 1989 May-Jun;10(3):180-7. doi: 10.1002/j.1939-4640.1989.tb00083.x.

Abstract

While GnRH is known to stimulate release of pituitary gonadotropins, its acute effects on the kinetics of secretion of the various hormones and subunits are not well characterized. Pulse-chase experiments were therefore performed to compare the time course of secretion of newly synthesized LH subunits and free alpha from rat pituitary quarters, and to study the effects of GnRH. After a 1-h pulse labeling with [35S]cysteine in the presence or absence of 10(-8) M GnRH, cultures were chased with excess unlabeled cysteine for 1, 2, 4, 8, or 20 h. Tissue lysates and media were immunoprecipitated sequentially with antisera to PRL, GH, LH beta and LH alpha, and the products were analyzed by gel electrophoresis. Labeled LH alpha was completely secreted by 4 h of chase without GnRH, and by 2 h with GnRH, as shown by its appearance in media and depletion from pituitary. Newly synthesized LH beta was depleted only at 8 h with GnRH from pituitary, suggesting much slower secretion. Incorporation of 35S into LH beta was approximately half that into LH alpha. Newly synthesized free alpha subunit was secreted between 4 and 20 h without GnRH, and by 8 h with GnRH. Free alpha incorporated a similar amount of radioactivity as LH beta. GnRH had no effect on the timing of the secretion of labeled total protein, PRL, GH, or TSH subunits. The amount of label incorporated during the pulse was greatest for PRL, approximately 15% of total protein label. GH incorporated approximately 20% as much label as PRL, with the glycoprotein subunits somewhat lower. The total amount of 35S incorporated into each protein studied was not affected by GnRH. The data indicate that short term in vitro GnRH exposure during a 1-h pulse labeling and chase acts to accelerate early secretion of LH alpha, LH beta and free alpha but does not affect overall protein synthesis. The peptide hormones PRL and GH incorporated the greatest amount of label and were the most briskly secreted hormones, while LH alpha led the glycoprotein subunits in the amount of incorporation and rapidity of secretion.

摘要

虽然已知促性腺激素释放激素(GnRH)能刺激垂体促性腺激素的释放,但其对各种激素及其亚基分泌动力学的急性影响尚未得到充分表征。因此,进行了脉冲追踪实验,以比较大鼠垂体各部分新合成的促黄体生成素(LH)亚基和游离α亚基的分泌时间进程,并研究GnRH的作用。在存在或不存在10⁻⁸ M GnRH的情况下,用[³⁵S]半胱氨酸脉冲标记1小时后,用过量未标记的半胱氨酸追踪培养物1、2、4、8或20小时。用抗催乳素(PRL)、生长激素(GH)、LHβ和LHα的抗血清依次对组织裂解物和培养基进行免疫沉淀,并用凝胶电泳分析产物。如在培养基中的出现和垂体中的消耗所示,未加GnRH时,标记的LHα在追踪4小时时完全分泌,加GnRH时在2小时时完全分泌。新合成的LHβ仅在加GnRH的情况下在垂体追踪8小时时耗尽,表明其分泌要慢得多。³⁵S掺入LHβ的量约为掺入LHα量的一半。新合成的游离α亚基在未加GnRH时在4至20小时之间分泌,加GnRH时在8小时时分泌。游离α掺入的放射性量与LHβ相似。GnRH对标记的总蛋白、PRL、GH或促甲状腺激素(TSH)亚基的分泌时间没有影响。脉冲期间掺入的标记量以PRL最大,约占总蛋白标记量的15%。GH掺入的标记量约为PRL的20%,糖蛋白亚基的掺入量略低。GnRH不影响所研究的每种蛋白质中³⁵S的掺入总量。数据表明,在1小时脉冲标记和追踪期间短期体外暴露于GnRH可加速LHα、LHβ和游离α的早期分泌,但不影响整体蛋白质合成。肽类激素PRL和GH掺入的标记量最大,是分泌最活跃的激素,而LHα在掺入量和分泌速度方面领先于糖蛋白亚基。

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