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甲状腺激素选择性调节人类乙醇脱氢酶同工酶催化的乙醇氧化。

Thyroid hormones selectively modulate human alcohol dehydrogenase isozyme catalyzed ethanol oxidation.

作者信息

Mårdh G, Auld D S, Vallee B L

机构信息

Center for Biochemical and Biophysical Sciences, Harvard Medical School, Boston, Massachusetts.

出版信息

Biochemistry. 1987 Dec 1;26(24):7585-8. doi: 10.1021/bi00398a008.

Abstract

Thyroid hormones are potent, instantaneous, and reversible inhibitors of ethanol oxidation catalyzed by isozymes of class I and II human alcohol dehydrogenase (ADH). None of the thyroid hormones inhibits class III ADH. At pH 7.40 the apparent Ki values vary between 55 and 110 microM for triiodothyronine, 35 and greater than 200 microM for thyroxine, and 10 and 23 microM for triiodothyroacetic acid. The inhibition is of a mixed type toward both NAD+ and ethanol. The binding of the thyroid hormone triiodothyronine to beta 1 gamma 1 ADH is mutually exclusive with 1,10-phenanthroline, 4-methylpyrazole, and testosterone, identifying a binding site(s) for the thyroid hormones, which overlap(s) both the 1,10-phenanthroline site near the active site zinc atom and the testosterone binding site, the latter being a regulatory site on the gamma-subunit-containing isozymes and distinct from their catalytic site. The inhibition by thyroid hormones may have implications for regulation of ADH catalysis of ethanol and alcohols in the intermediary metabolism of dopamine, norepinephrine, and serotonin and in steroid metabolism. In concert with other hormonal regulators, e.g., testosterone, the rate of ADH catalysis is capable of being fine tuned in accord with both substrate and modulator concentrations.

摘要

甲状腺激素是人类I类和II类乙醇脱氢酶(ADH)同工酶催化的乙醇氧化的强效、即时且可逆的抑制剂。甲状腺激素均不抑制III类ADH。在pH 7.40时,三碘甲状腺原氨酸的表观Ki值在55至110微摩尔之间,甲状腺素为35至大于200微摩尔,三碘甲状腺乙酸为10至23微摩尔。这种抑制作用对NAD+和乙醇均为混合型。甲状腺激素三碘甲状腺原氨酸与β1γ1 ADH的结合与1,10 - 菲咯啉、4 - 甲基吡唑和睾酮相互排斥,这确定了甲状腺激素的一个结合位点,该位点与活性位点锌原子附近的1,10 - 菲咯啉位点以及睾酮结合位点重叠,后者是含γ亚基同工酶上的一个调节位点,与其催化位点不同。甲状腺激素的抑制作用可能对多巴胺、去甲肾上腺素和5 - 羟色胺中间代谢以及类固醇代谢中ADH催化乙醇和醇类的调节有影响。与其他激素调节剂(如睾酮)协同作用,ADH催化速率能够根据底物和调节剂浓度进行精细调节。

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