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以米诺地尔为底物对重组人肝脏脱氢表雄酮硫酸转移酶的表征。

Characterization of recombinant human liver dehydroepiandrosterone sulfotransferase with minoxidil as the substrate.

作者信息

Kudlacek P E, Clemens D L, Halgard C M, Anderson R J

机构信息

Section of Endocrinology, Diabetes and Metabolism, VAMC, Omaha, NE 68105, USA.

出版信息

Biochem Pharmacol. 1997 Jan 24;53(2):215-21. doi: 10.1016/s0006-2952(96)00728-9.

Abstract

Biotransformation of xenobiotics and hormones through sulfate conjugation is an important metabolic pathway in humans. The activation of minoxidil, an antihypertensive agent and hair growth stimulator, by sulfation (sulfonation) is carried out by more than one sulfotransferase. Initially only the thermostable form of phenol sulfotransferase was thought to catalyze minoxidil sulfation. We document in this report the new finding that human liver dehydroepiandrosterone sulfotransferase (DHEAST), an hydroxysteroid sulfotransferase distinct from phenol sulfotransferases, also catalyzes the reaction. To characterize more precisely the activity of DHEA ST toward minoxidil, we used COS-1 cells to express DHEA ST from a human liver cDNA clone. The apparent Km values for minoxidil and [35S]3'-phosphoadenosine-5'-phosphosulfate were 3.9 mM and 0.13 microM, respectively. The 50% inactivation temperature of the COS-expressed enzyme was 42 degrees, and the IC50 value for 2,6-dichloro-4-nitrophenol was 1.4 x 10(-4) M. Both the thermal stability behavior and response to DCNP were similar when the cDNA encoded DHEA ST was assayed with DHEA or minoxidil as a substrate. NaCl led to a greater activation of the cDNA expressed DHEA ST when assayed with DHEA (2.5-fold) than when the same preparation was assayed with minoxidil (1.4-fold). These data indicate that DHEA ST catalyzes the sulfate conjugation of minoxidil: DHEA ST activity present in the human gut and liver would be expected to add to the overall sulfate conjugation of orally administered minoxidil. Thus, DHEA ST activity must be considered when determining the human tissue sulfotransferase contribution to minoxidil sulfation.

摘要

通过硫酸结合作用对外源生物活性物质和激素进行生物转化是人体重要的代谢途径。米诺地尔是一种抗高血压药物和毛发生长刺激剂,其通过硫酸化(磺化)作用的激活过程由多种磺基转移酶参与。最初,人们认为只有热稳定形式的酚磺基转移酶催化米诺地尔的硫酸化反应。我们在本报告中记录了一项新发现:人肝脏脱氢表雄酮磺基转移酶(DHEAST),一种不同于酚磺基转移酶的羟基类固醇磺基转移酶,也能催化该反应。为了更精确地表征DHEA ST对米诺地尔的活性,我们利用COS - 1细胞从人肝脏cDNA克隆中表达DHEA ST。米诺地尔和[35S]3'-磷酸腺苷-5'-磷酸硫酸酯的表观Km值分别为3.9 mM和0.13 microM。COS细胞表达的该酶的50%失活温度为42℃,2,6 - 二氯-4 - 硝基苯酚的IC50值为1.4×10(-4) M。当以DHEA或米诺地尔为底物检测cDNA编码的DHEA ST时,其热稳定性行为和对DCNP的反应相似。当用DHEA检测时,NaCl对cDNA表达的DHEA ST的激活作用(2.5倍)大于用米诺地尔检测时(1.4倍)。这些数据表明DHEA ST催化米诺地尔的硫酸结合反应:预计人肠道和肝脏中存在的DHEA ST活性会增加口服米诺地尔的整体硫酸结合作用。因此,在确定人体组织磺基转移酶对米诺地尔硫酸化的贡献时,必须考虑DHEA ST活性。

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