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促甲状腺激素释放激素对分泌型小鼠促甲状腺激素碳水化合物结构的影响。凝集素亲和层析分析。

Effect of thyrotropin-releasing hormone on the carbohydrate structure of secreted mouse thyrotropin. Analysis by lectin affinity chromatography.

作者信息

Gesundheit N, Fink D L, Silverman L A, Weintraub B D

出版信息

J Biol Chem. 1987 Apr 15;262(11):5197-203.

PMID:3104329
Abstract

Thyrotropin (TSH) is a glycoprotein hormone whose secretion from the anterior pituitary is regulated, in part, by the hypothalamic tripeptide thyrotropin-releasing hormone (TRH). We have used serial lectin affinity analysis to explore whether TRH, in addition to promoting TSH secretion, alters the carbohydrate structure of secreted TSH. Hypothyroid mouse hemipituitaries were incubated in medium containing [3H] mannose, [3H]glucosamine, or [3H]fucose either with or without 10(-7) M TRH. TSH was immunoprecipitated, proteolytically digested into glycopeptides, and chromatographed on serial lectin-Sepharose columns. Under basal conditions, 37% of secreted [3H]mannose-labeled TSH glycopeptides failed to bind to concanavalin A (ConA)-Sepharose, 55% bound and eluted with 10 mM alpha-methylglucoside, and 8% bound and eluted with 500 mM alpha-methylmannoside. Approximately 35% of glycopeptides not binding to ConA-Sepharose were bound by pea lectin-Sepharose, suggesting the presence of certain core fucosylated triantennary complex oligosaccharides. TRH caused a 2-fold increase in secretion of [3H]mannose-labeled TSH glycopeptides due almost exclusively to a specific increase in structures that bound to ConA-Sepharose and eluted with 10mM alpha-methylglucoside, corresponding to biantennary complex or unusual hybrid species. There was no change in the distribution of intrapituitary TSH glycopeptides with TRH. Acid hydrolysis of secreted proteins showed little metabolism of the tritiated sugar precursors, except for a 20% conversion of [3H]mannose to [3H]fucose. Moreover, ConA-Sepharose chromatography of secreted [3H]glucosamine- and [3H]fucose-labeled TSH glycopeptides showed similar increases in ConA-Sepharose binding with TRH as noted with [3H]mannose labeling. Subsequent lectin analysis of secreted [3H] mannose-labeled TSH glycopeptides on erythroagglutinating phytohemagglutinin-Sepharose and leukoagglutinating phytohemagglutinin-Sepharose disclosed no significant differences in TRH-treated versus control samples. These data suggest that secreted mouse TSH has greater carbohydrate heterogeneity than has been recognized previously. In addition, TRH in vitro promotes the secretion of specific TSH molecules apparently enriched in biantennary complex or unusual hybrid oligosaccharides.

摘要

促甲状腺激素(TSH)是一种糖蛋白激素,其从前脑垂体的分泌部分受下丘脑三肽促甲状腺激素释放激素(TRH)调节。我们使用系列凝集素亲和分析来探究TRH除了促进TSH分泌外,是否会改变分泌型TSH的碳水化合物结构。将甲状腺功能减退小鼠的半脑垂体在含有[3H]甘露糖、[3H]葡糖胺或[3H]岩藻糖的培养基中孵育,添加或不添加10^(-7)M的TRH。对TSH进行免疫沉淀,蛋白水解消化成糖肽,并在系列凝集素-琼脂糖柱上进行层析。在基础条件下,37%分泌的[3H]甘露糖标记的TSH糖肽不与伴刀豆球蛋白A(ConA)-琼脂糖结合,55%结合并能用10mMα-甲基葡糖苷洗脱,8%结合并能用500mMα-甲基甘露糖苷洗脱。约35%不与ConA-琼脂糖结合的糖肽能与豌豆凝集素-琼脂糖结合,提示存在某些核心岩藻糖基化的三触角复合寡糖。TRH使[3H]甘露糖标记的TSH糖肽分泌增加2倍,几乎完全是由于与ConA-琼脂糖结合并用10mMα-甲基葡糖苷洗脱的结构特异性增加,这对应于二触角复合或异常杂合类型。垂体内TSH糖肽的分布在添加TRH后没有变化。分泌蛋白的酸水解显示,除了20%的[3H]甘露糖转化为[3H]岩藻糖外,标记的糖前体代谢很少。此外,分泌的[3H]葡糖胺和[3H]岩藻糖标记的TSH糖肽的ConA-琼脂糖层析显示,与[3H]甘露糖标记情况类似,添加TRH后ConA-琼脂糖结合增加。随后对分泌的[3H]甘露糖标记的TSH糖肽在红细胞凝集植物血凝素-琼脂糖和白细胞凝集植物血凝素-琼脂糖上进行凝集素分析,结果显示经TRH处理的样品与对照样品之间没有显著差异。这些数据表明,分泌的小鼠TSH具有比以前认识到更大的碳水化合物异质性。此外,体外TRH促进特定TSH分子的分泌,这些分子明显富含二触角复合或异常杂合寡糖。

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