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甲状腺素在前垂体腺中向三碘甲状腺原氨酸的转化及其对甲状腺状态的影响。

Conversion of thyroxine to triiodothyronine in the anterior pituitary gland and the influence of this process on thyroid status.

作者信息

Kaplan M M, Breitbart R

出版信息

Horm Metab Res Suppl. 1984;14:79-85.

PMID:6595194
Abstract

There are two iodothyronine 5'-deiodinases in the rat anterior pituitary gland. The type II 5'-deiodinase is responsible for the observable T4 to T3 conversion in pituitary tissue, both in vivo and in vitro. This type II enzyme has kinetic characteristics which distinguish it from type I activity, and it is also insensitive to inhibition by propylthiouracil. Iopanoic acid is both a substrate for, and an inhibitor of, the pituitary type II 5'-deiodinase. Studies in the rat and in man using iopanoic acid as a probe indicate that conversion of T4 to T3 within the anterior pituitary is a necessary step in the expression of thyroid hormone effects on the thyrotrophic and somatotrophic cells after T4 administration. Amiodarone, which has effects on the human pituitary-thyroid axis similar to those of iopanoic acid, has little inhibitory activity on T4 5'-deiodination in rat pituitary homogenate. Phenytoin, which lowers the serum T4 after chronic administration without inducing an increase in thyrotropin, could theoretically act by enhancing intrapituitary T3 production. In actuality, phenytoin shows only inhibitory activity in vitro on type II 5'-deiodination in rat pituitary and brain homogenates and on type I activity in rat liver homogenates. Phenytoin treatment in vivo has no significant effect on T4 5'-deiodination in pituitary or liver homogenates either. Evidence is discussed regarding whether the increase in type II 5'-deiodinating activity in hypothyroidism, and the decrease in hyperthyroidism, are beneficial defense mechanisms; this is likely to be so in some parts of the body, but may ot be in the thyrotrophic cells of the anterior pituitary.

摘要

大鼠垂体前叶存在两种碘甲状腺原氨酸5'-脱碘酶。II型5'-脱碘酶负责在体内和体外垂体组织中观察到的甲状腺素(T4)向三碘甲状腺原氨酸(T3)的转化。这种II型酶具有区别于I型活性的动力学特征,并且对丙硫氧嘧啶的抑制作用不敏感。碘番酸既是垂体II型5'-脱碘酶的底物,也是其抑制剂。在大鼠和人体中使用碘番酸作为探针进行的研究表明,垂体前叶内T4向T3的转化是给予T4后甲状腺激素对促甲状腺细胞和促生长细胞发挥作用的必要步骤。胺碘酮对人体垂体-甲状腺轴的作用与碘番酸相似,但对大鼠垂体匀浆中T4的5'-脱碘作用几乎没有抑制活性。苯妥英在长期给药后可降低血清T4水平而不引起促甲状腺激素升高,理论上其作用机制可能是增强垂体T3的生成。实际上,苯妥英在体外仅对大鼠垂体和脑匀浆中的II型5'-脱碘作用以及大鼠肝匀浆中的I型活性具有抑制作用。苯妥英在体内对垂体或肝匀浆中T4的5'-脱碘作用也无显著影响。文中讨论了关于甲状腺功能减退时II型5'-脱碘活性增加以及甲状腺功能亢进时该活性降低是否为有益防御机制的证据;这在身体某些部位可能如此,但在前叶促甲状腺细胞中可能并非如此。

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