首页> 外文期刊>Drug metabolism and pharmacokinetics. >Transport of estrone 3-sulfate mediated by organic anion transporter OATP4C1: estrone 3-sulfate binds to the different recognition site for digoxin in OATP4C1.
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Transport of estrone 3-sulfate mediated by organic anion transporter OATP4C1: estrone 3-sulfate binds to the different recognition site for digoxin in OATP4C1.

机译:由有机阴离子转运蛋白OATP4C1介导的硫酸雌酮3-硫酸盐的转运:雌酮3-硫酸盐与OATP4C1中地高辛的不同识别位点结合。

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摘要

Human organic anion transporter OATP4C1 is a member of the OATP family predominantly expressed in the kidney, and contributes to the renal secretion of digoxin. However, little is known about the characteristics of OATP4C1-madiated transport. We examined the transport of estrone 3-sulfate, which is known as a substrate for other OATPs, by OATP4C1-expressing cells. Estrone 3-sulfate was efficiently transported by OATP4C1. The Michaelis-Menten constant for estrone 3-sulfate uptake by OATP4C1 was 26.6+/-4.9 microM. Transport of estrone 3-sulfate was significantly inhibited by triiodothyronine, chenodeoxycholic acid, bromosulfophtalein, and cyclosporine, whereas known substrates of OATP4C1, digoxin and ouabain, did not change OATP4C1-mediated transport. We further examined the mutual inhibition study between estrone 3-sulfate and digoxin. Digoxin partially inhibited the estrone 3-sulfate transport, and estrone 3-sulfate did not significantly inhibit digoxin transport. The estimated IC(50) value of digoxin for OATP4C1-mediated estrone 3-sulfate transport was 119 microM. This value is not comparable with the Michaelis-Menten constant for digoxin uptake by OATP4C1 (7.8 microM) reported by Mikkaichi et al.(1)) In conclusion, we found that estrone 3-sulfate is a novel substrate for OATP4C1. Moreover, our results indicate that estrone 3-sulfate does not bind to the recognition site for digoxin in OATP4C1.
机译:人有机阴离子转运蛋白OATP4C1是OATP家族的成员,主要在肾脏中表达,并有助于地高辛的肾脏分泌。但是,对OATP4C1酰化转运的特征了解甚少。我们检查了表达OATP4C1的细胞对雌二醇3-硫酸盐(被称为其他OATP的底物)的转运。 OATP4C1可以有效地转运3-硫酸雌酮。 OATP4C1吸收的雌酮3-硫酸盐的Michaelis-Menten常数为26.6 +/- 4.9 microM。三碘甲腺嘌呤,鹅去氧胆酸,溴磺酰佛洛林和环孢菌素显着抑制3-硫酸雌酮的转运,而OATP4C1,地高辛和哇巴因的已知底物则不会改变OATP4C1介导的转运。我们进一步检查了3-硫酸雌酮和地高辛之间的相互抑制研究。地高辛部分抑制了雌酮3-硫酸盐的运输,而雌酮3-硫酸盐没有显着抑制地高辛的运输。地高辛对OATP4C1介导的雌酮3-硫酸盐转运的估计IC(50)值为119 microM。该值不能与Mikkaichi等人报道的OATP4C1吸收地高辛的米氏常数(7.8 microM)相比较(1))。总而言之,我们发现3-硫酸雌酮是OATP4C1的新型底物。此外,我们的结果表明,雌二醇3-硫酸盐不与OATP4C1中地高辛的识别位点结合。

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