Tanaka K, Inada M, Mashio Y, Ishii H, Naito K, Nishikawa M, Takahashi K, Imura H
Acta Endocrinol (Copenh). 1982 Nov;101(3):371-6. doi: 10.1530/acta.0.1010371.
The present study revealed the existence and some characteristics of rT3 5'-deiodinase in rat brain by measuring the production of 3,3'-T2 from rT3 by radioimmunoassay. The conversion of rT3 to 3,3'-T2 was dependent on the duration of the incubation, tissue amount, temperature and pH (the optimal pH was 8.0), suggesting its enzymatic nature. Apparent Km was estimated to be 0.16 microM and the Vmax was 139.3 fmol/mg protein/min. The converting activity was dependent on the concentration of dithiothreitol (DTT). In contrast to T4 or T3 5-deiodinase, rT3 5'-deiodinase activity in the rat brain was the highest in cerebellum and the activity was low in the neonatal rat brain. Moreover, the 5'-deiodinase activity was inhibited by propylthiouracil (PTU). These differences between rT3 5'-deiodinase and T4 or T3 5-deiodinase suggest that different deiodinases are present in rat brain, and the local conversion of thyroid hormone is important for its action in the central nervous system.
本研究通过放射免疫分析法测定大鼠脑内rT3生成3,3'-T2的量,揭示了大鼠脑内rT3 5'-脱碘酶的存在及其一些特性。rT3向3,3'-T2的转化依赖于孵育时间、组织量、温度和pH值(最适pH为8.0),提示其具有酶的性质。表观Km估计为0.16微摩尔,Vmax为139.3飞摩尔/毫克蛋白/分钟。转化活性依赖于二硫苏糖醇(DTT)的浓度。与T4或T3 5-脱碘酶不同,大鼠脑内rT3 5'-脱碘酶活性在小脑最高,在新生大鼠脑内活性较低。此外,5'-脱碘酶活性受到丙硫氧嘧啶(PTU)的抑制。rT3 5'-脱碘酶与T4或T3 5-脱碘酶之间的这些差异表明,大鼠脑内存在不同的脱碘酶,甲状腺激素的局部转化对其在中枢神经系统中的作用很重要。