首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Regiospecificity and stereospecificity of human udpglucuronosyltransferases in the glucuronidation of estriol, 16-epiestriol, 17-epiestriol, and 13-epiestradiols
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Regiospecificity and stereospecificity of human udpglucuronosyltransferases in the glucuronidation of estriol, 16-epiestriol, 17-epiestriol, and 13-epiestradiols

机译:人udpglucuronosyltransferases的区域特异性和立体特异性在雌三醇,16-庚三醇,17-庚三醇和13-庚二酮的葡萄糖醛酸化中

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The glucuronidation of estriol, 16-epiestriol, and 17-epiestriol by the human UDP-glucuronosyltransferases (UGTs) of subfamilies 1A, 2A, and 2B was examined. UGT1A10 is highly active in the conjugation of the 3-OH in all these estriols, whereas UGT2B7 is the most active UGT toward one of the ring D hydroxyls, the 16-OH in estriol and 16-epiestriol, but the 17-OH in 17-epiestriol. Kinetic analyses indicated that the 17-OH configuration plays a major role in the affinity of UGT2B7 for estrogens. The glucuronidation of the different estriols by the human liver and intestine microsomes reflects the activity of UGT1A10 and UGT2B7 in combination with the tissues' difference in UGT1A10 expression. The UGT1A10 mutant 1A10-F93G exhibited much higher Vmax values than UGT1A10 in estriol and 17-epiestriol glucuronidation, but a significantly lower value in 16-epiestriol glucuronidation. To this study on estriol glucuronidation we have added experiments with 13-epiestradiol, a synthetic estradiol in which the spatial arrangement of the methyl on C18 and the hydroxyl on C17 is significantly different than in other estrogens. In comparison with estradiol glucuronidation, the C13 configuration change decreases the turnover of UGTs that conjugate the 3-OH, but increases it in UGTs that primarily conjugate the 17-OH. Unexpectedly, UGT2B17 exhibited similar conjugation rates of both the 17-OH and 3-OH of 13-espiestradiol. The combined results reveal the strong preference of UGT1A10 for the 3-OH of physiologic estrogens and the equivalently strong preference of UGT2B7 and UGT2B17 for the hydroxyls on ring D of such steroid hormones.
机译:检查了亚家族1A,2A和2B的人UDP-葡萄糖醛酸转移酶(UGT)对雌三醇,16-庚三醇和17-庚三醇的葡萄糖醛酸苷化作用。 UGT1A10在所有这些雌醇中的3-OH共轭中均具有很高的活性,而UGT2B7是对D型羟基之一(雌三醇和16-庚三醇中最活跃的)的UGT,但在17种中的17-OH最为活跃。 -艾替三醇。动力学分析表明17-OH构型在UGT2B7对雌激素的亲和力中起主要作用。人肝和肠微粒体对不同雌激素的葡萄糖醛酸化反应反映了UGT1A10和UGT2B7的活性,并结合了组织中UGT1A10表达的差异。 UGT1A10突变体1A10-F93G在雌三醇和17-庚三醇葡萄糖醛酸化中表现出比UGT1A10高得多的Vmax值,但是在16-庚三醇葡萄糖醛酸化中的Vmax值低得多。在这项关于雌三醇葡萄糖醛酸化的研究中,我们添加了13-雌二醇的实验,这是一种合成雌二醇,其中C18上的甲基和C17上的羟基的空间排列方式与其他雌激素明显不同。与雌二醇葡糖醛酸化相比,C13构型变化降低了缀合3-OH的UGT的周转率,但是增加了主要缀合17-OH的UGT的周转率。出乎意料的是,UGT2B17表现出相似的13-雌二醇的17-OH和3-OH结合率。综合结果表明,UGT1A10对生理性雌激素的3-OH的强烈偏好,以及UGT2B7和UGT2B17对此类甾类激素D环上的羟基的强烈偏好。

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