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丹曲林、格拉非宁、萘啶酸和哌唑嗪与人有机阴离子转运体1和3的差异相互作用。

Differential Interaction of Dantrolene, Glafenine, Nalidixic Acid, and Prazosin with Human Organic Anion Transporters 1 and 3.

作者信息

Burckhardt Birgitta C, Henjakovic Maja, Hagos Yohannes, Burckhardt Gerhard

机构信息

Center of Physiology and Pathophysiology, University Medical Center Goettingen, Goettingen, Germany (B.C.B, M.H., Y.H., G.B.); Department I of Internal Medicine, University Medical Center Cologne, Cologne, Germany (M.H.); and PortaCellTec Biosciences GmbH, Goettingen, Germany (Y.H.)

Center of Physiology and Pathophysiology, University Medical Center Goettingen, Goettingen, Germany (B.C.B, M.H., Y.H., G.B.); Department I of Internal Medicine, University Medical Center Cologne, Cologne, Germany (M.H.); and PortaCellTec Biosciences GmbH, Goettingen, Germany (Y.H.).

出版信息

J Pharmacol Exp Ther. 2017 Sep;362(3):450-458. doi: 10.1124/jpet.117.241406. Epub 2017 Jun 19.

Abstract

In renal proximal tubule cells, the organic anion transporters 1 and 3 (OAT1 and OAT3) in the basolateral membrane and the multidrug resistance-associated protein 4 (MRP4) in the apical membrane share substrates and co-operate in renal drug secretion. We hypothesized that recently identified MRP4 inhibitors dantrolene, glafenine, nalidixic acid, and prazosin also interact with human OAT1 and/or OAT3 stably transfected in human embryonic kidney 293 cells. These four drugs were tested as possible inhibitors of -[H]aminohippurate (PAH) and [C]glutarate uptake by OAT1, and of [H]estrone-3-sulfate (ES) uptake by OAT3. In addition, we explored whether these drugs decrease the equilibrium distribution of radiolabeled PAH, glutarate, or ES, an approach intended to indirectly suggest drug/substrate exchange through OAT1 and OAT3. With OAT3, a dose-dependent inhibition of [H]ES uptake and a downward shift in [H]ES equilibrium were observed, indicating that all four drugs bind to OAT3 and may possibly be translocated. In contrast, the interaction with OAT1 was more complex. With [C]glutarate as substrate, all four drugs inhibited uptake but only glafenine and nalidixic acid shifted glutarate equilibrium. Using [H]PAH as a substrate of OAT1, nalidixic acid inhibited but dantrolene, glafenine, and prazosin stimulated uptake. Nalidixic acid decreased equilibrium content of [H]PAH, suggesting that it may possibly be exchanged by OAT1. Taken together, OAT1 and OAT3 interact with the MRP4 inhibitors dantrolene, glafenine, nalidixic acid, and prazosin, indicating overlapping specificities. At OAT1, more than one binding site must be assumed to explain substrate and drug-dependent stimulation and inhibition of transport activity.

摘要

在肾近端小管细胞中,基底外侧膜上的有机阴离子转运体1和3(OAT1和OAT3)以及顶膜上的多药耐药相关蛋白4(MRP4)共享底物并协同参与肾脏药物分泌。我们推测,最近鉴定出的MRP4抑制剂丹曲林、格拉非宁、萘啶酸和哌唑嗪也与人胚肾293细胞中稳定转染的人OAT1和/或OAT3相互作用。测试了这四种药物作为OAT1对 -[H]氨基马尿酸(PAH)和[C]戊二酸摄取以及OAT3对[H]雌酮 -3-硫酸盐(ES)摄取的可能抑制剂。此外,我们探究了这些药物是否会降低放射性标记的PAH、戊二酸或ES的平衡分布,该方法旨在间接表明药物/底物通过OAT1和OAT3进行交换。对于OAT3,观察到[H]ES摄取呈剂量依赖性抑制以及[H]ES平衡向下移动,表明这四种药物均与OAT3结合且可能发生转运。相比之下,与OAT1的相互作用更为复杂。以[C]戊二酸为底物时,这四种药物均抑制摄取,但只有格拉非宁和萘啶酸改变了戊二酸的平衡。使用[H]PAH作为OAT1的底物时,萘啶酸抑制摄取,而丹曲林、格拉非宁和哌唑嗪则刺激摄取。萘啶酸降低了[H]PAH的平衡含量,表明它可能通过OAT1进行交换。综上所述,OAT1和OAT3与MRP4抑制剂丹曲林、格拉非宁、萘啶酸和哌唑嗪相互作用,表明存在重叠的特异性。对于OAT1,必须假定存在不止一个结合位点来解释底物和药物依赖性对转运活性的刺激和抑制。

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