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Changes in the sialylation and sulfation of secreted thyrotropin in congenital hypothyroidism.

机译:先天性甲状腺功能减退症中分泌的促甲状腺素唾液酸化和硫酸化的变化。

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摘要

We have examined the oligosaccharide structure of secreted thyrotropin (TSH) in perinatal and mature rats with congenital primary hypothyroidism. Rat pituitaries from euthyroid control animals and those rendered hypothyroid by methimazole treatment were incubated with [3H]glucosamine in vitro. Secreted TSH was purified, and oligosaccharides were enzymatically released and characterized by anion-exchange HPLC. In perinatal hypothyroid animals compared with control animals, oligosaccharides from TSH alpha and beta subunits contained more species with three or more negative charges. Moreover, perinatal hypothyroid animals demonstrated a dramatic increase in the ratio of sialylated to sulfated species within oligosaccharides of the same negative charge (2.9- to 7.4-fold increase for TSH-alpha; 15.1- to 25.5-fold increase for TSH-beta). In mature hypothyroid 9-week-old animals compared with control animals, changes were less pronounced, suggesting that endocrine regulation of oligosaccharide structure is dependent upon the maturational state of the animal. These changes were specific for TSH because glycosylation of free alpha subunit (synthesized by the thyrotroph and gonadotroph) and of total glycoproteins was minimally altered by hypothyroidism. Together, these data provide direct evidence and characterization of specific changes in the structure of a secreted pituitary glycoprotein hormone occurring as a result of in vivo endocrine alterations during early development. Moreover, they provide a potential structural basis to explain the delayed clearance of both TSH and the gonadotropins with end-organ deficiency, which may have important implications for the in vivo biological activities of these hormones. Specifically, such posttranslational changes may be an important adaptive response to prevent the consequences of endocrine deficiency during early development.
机译:我们已经检查了先天性甲状腺功能减退症的围产期和成熟大鼠中分泌促甲状腺激素(TSH)的寡糖结构。将来自正常甲状腺对照动物的大鼠垂体和通过甲巯咪唑处理使甲状腺功能减退的大鼠垂体与[3H]葡萄糖胺体外孵育。纯化分泌的TSH,并通过酶促释放寡糖并通过阴离子交换HPLC进行表征。与对照动物相比,在围产期甲状腺功能减退动物中,TSHα和β亚基的寡糖含有更多的带有三个或更多负电荷的物种。此外,围产期甲状腺功能低下的动物表现出相同负电荷的寡糖中唾液酸化分子与硫酸化物种的比率急剧增加(TSH-α增加2.9至7.4倍;TSH-β增加15.1至25.5倍)。与对照动物相比,在成熟的甲状腺功能低下的9周龄动物中,变化较不明显,表明寡糖结构的内分泌调节取决于动物的成熟状态。这些变化对TSH是特异的,因为甲状腺功能减退对游离α亚基(由甲状腺营养和性腺营养合成)和总糖蛋白的糖基化影响最小。总之,这些数据提供了直接的证据并表征了由于早期发育期间体内内分泌改变而导致的垂体垂体糖蛋白激素结构的特定变化。此外,它们为解释TSH和促性腺激素具有终末器官缺陷的延迟清除提供了潜在的结构基础,这可能对这些激素的体内生物学活性具有重要意义。具体而言,此类翻译后变化可能是重要的适应性反应,可防止早期发育期间内分泌不足的后果。

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