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大鼠肝脏匀浆中碘甲腺原氨酸5'-脱碘酶的底物特异性及其体外对二价阳离子的需求。

Substrate specificity of iodothyronine 5'-deiodinase in rat liver homogenates and its requirements of divalent cations in vitro.

作者信息

Kobayshi S, Gao Y, Ong R L, Pittman C S

出版信息

Life Sci. 1986 Jun 16;38(24):2231-8. doi: 10.1016/0024-3205(86)90575-8.

Abstract

Studies were carried out to compare the 5'-deiodination reactions of thyroxine (T4) and 3,3'-5'-triiodothyronine (rT3) in 2.5% rat liver homogenates. The 5'-deiodinase activity was assayed by the 3,5,3'-triiodothyronine (T3) produced from T4 or by 125I-rT3. Under our experimental conditions, the two 5'-monodeiodination reactions resulted in similar apparent KMs: 1.5 microM for T4 and 1.1 microM for rT3. However, the apparent Vmax values of T4 and rT3 deiodination reactions were, respectively, 0.91 and 222 pmol/mg protein/min. Both reactions were stimulated by thiol reagents but only rT3 deiodination showed complete thiol dependence. The inhibitory effect of 6-propyl-2-thiouracil on the 5'-deiodination of rT3 was at least 50 fold greater than that of T4. The divalent ion requirement of the deiodination system was tested with CaCl2, MgCl2, and ZnCl2 at a range of concentrations. Zinc ion appeared to be a potent inhibitor in both T4 and rT3 deiodination systems. Only the 5'-deiodination of rT3 was inhibited slightly by low concentrations of calcium and magnesium ions. Our results suggest that based on their apparently distinct regulation mechanisms, the 5'-monodiodination of T4 and rT3 in rat liver homogenates is likely mediated by more than one enzyme, despite the similarity of observed KMs.

摘要

开展了多项研究,以比较甲状腺素(T4)和3,3'-5'-三碘甲状腺原氨酸(rT3)在2.5%大鼠肝脏匀浆中的5'-脱碘反应。通过由T4产生的3,5,3'-三碘甲状腺原氨酸(T3)或125I-rT3来测定5'-脱碘酶活性。在我们的实验条件下,两种5'-单脱碘反应产生了相似的表观Km值:T4为1.5微摩尔,rT3为1.1微摩尔。然而,T4和rT3脱碘反应的表观Vmax值分别为0.91和222皮摩尔/毫克蛋白质/分钟。两种反应均受硫醇试剂刺激,但只有rT3脱碘表现出完全的硫醇依赖性。6-丙基-2-硫尿嘧啶对rT3的5'-脱碘的抑制作用比对T4的抑制作用至少大50倍。用一系列浓度的氯化钙、氯化镁和氯化锌测试了脱碘系统对二价离子的需求。锌离子似乎是T4和rT3脱碘系统中的有效抑制剂。低浓度的钙和镁离子仅对rT3的5'-脱碘有轻微抑制作用。我们的结果表明,尽管观察到的Km值相似,但基于它们明显不同的调节机制,大鼠肝脏匀浆中T4和rT3的5'-单脱碘可能由不止一种酶介导。

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