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垂体促性腺细胞中受体结合型促性腺激素释放激素激动剂的细胞内信号通路。

Intracellular pathways of receptor-bound GnRH agonist in pituitary gonadotropes.

作者信息

Hazum E, Koch Y, Liscovitch M, Amsterdam A

出版信息

Cell Tissue Res. 1985;239(1):3-8. doi: 10.1007/BF00214895.

Abstract

Localization of GnRH receptors in rat pituitary gonadotropes was studied by use of 125I-[azidobenzoyl-D-Lys6]GnRH which, upon photolysis, is covalently bound to the receptor molecule. Using high resolution autoradiography, it was found that, after a 90-min incubation of the analog with pituitary cells at 4 degrees C, 93% of the silver grains were associated with the plasma membrane of the gonadotropes. After 45-min incubation of the cells at 37 degrees C, clustering and internalization of the receptor-bound GnRH analog were evident. Silver grains were associated with coated pits, intracellular vesicles, Golgi complexes, lysosome-like structures and secretory granules. The data indicate that receptor-bound GnRH agonist is internalized, at least in part, via coated pits and is subsequently routed to lysosomes where degradation of the hormone-receptor complex may occur. The presence of a considerable amount of silver grains associated with secretory granules may suggest that some of the internalized receptor molecules can escape degradation and be recycled to the cell membrane.

摘要

利用125I-[叠氮苯甲酰-D-赖氨酸6]GnRH研究大鼠垂体促性腺激素细胞中GnRH受体的定位,该物质经光解后可与受体分子共价结合。采用高分辨率放射自显影法发现,在4℃下将该类似物与垂体细胞孵育90分钟后,93%的银颗粒与促性腺激素细胞的质膜相关。在37℃下将细胞孵育45分钟后,受体结合的GnRH类似物出现聚集和内化现象。银颗粒与有被小窝、细胞内小泡、高尔基体复合物、溶酶体样结构和分泌颗粒相关。数据表明,受体结合的GnRH激动剂至少部分通过有被小窝内化,随后被转运至溶酶体,在那里激素-受体复合物可能会发生降解。与分泌颗粒相关的大量银颗粒的存在可能表明,一些内化的受体分子可以逃避降解并循环回到细胞膜。

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