Zentrum für Physiologie und Pathophysiologie, Abt. Vegetative Physiologie, Humboldtallee 23, Universität Göttingen, Göttingen 37073, Germany.
Can J Physiol Pharmacol. 2010 Feb;88(2):141-6. doi: 10.1139/Y09-123.
Recent investigations involving intact rabbit renal proximal tubules indicated that organic anion transporter 3 (OAT3) may be involved in the transport of 2,3-dimercapto-1-propanesulfonic acid (DMPS). Therefore, we evaluated the interaction of OAT3 with DMPS to determine the effect of OAT3 on basolateral DMPS uptake. We used stably transfected HEK293 cells expressing human and rabbit orthologs of the exchanger OAT1 and OAT3. Using 6-carboxyfluorescein (6-CF) as a substrate, the IC50 determinations for reduced DMPS (DMPSH) revealed a stronger interaction with OAT1 than with OAT3 (rbOAT1, 123.3 +/- 13.7; hOAT1, 85.1 +/- 8.8; rbOAT3, 171.7 +/- 22.3; and hOAT3, 172.2 +/- 36.4 micromol/L). However, inhibition of 6-CF uptake by the oxidized form of DMPS (DMPSS), the main form of DMPS in the blood, showed a greater affinity for OAT3 (rbOAT1, 237.4 +/- 23; hOAT1, 104.6 +/- 13.1; rbOAT3, 52.4 +/- 7.6; and hOAT3, 31.6 +/- 6.6 micromol/L). To determine whether DMPSH and DMPSS are substrates for OAT3, we performed efflux studies with [14C]glutarate and inwardly directed gradients of glutarate. The inhibitors trans-stimulated the efflux of [14C]glutarate, suggesting that OAT3 may be able to transport both forms of DMPS. On the basis of the substantial interaction of OAT3 with DMPSS, we conclude that OAT3 represents the dominant basolateral player in renal detoxification processes resulting from use of DMPS.
最近对完整的兔肾近端小管的研究表明,有机阴离子转运蛋白 3(OAT3)可能参与 2,3-二巯基-1-丙磺酸(DMPS)的转运。因此,我们评估了 OAT3 与 DMPS 的相互作用,以确定 OAT3 对基底外侧 DMPS 摄取的影响。我们使用稳定转染的表达人源和兔源 OAT1 和 OAT3 同源物的 HEK293 细胞进行研究。使用 6-羧基荧光素(6-CF)作为底物,还原型 DMPS(DMPSH)的 IC50 测定结果表明,其与 OAT1 的相互作用强于与 OAT3 的相互作用(rbOAT1,123.3 +/- 13.7;hOAT1,85.1 +/- 8.8;rbOAT3,171.7 +/- 22.3;hOAT3,172.2 +/- 36.4 微摩尔/升)。然而,氧化型 DMPS(DMPSS),即血液中 DMPS 的主要形式,对 6-CF 摄取的抑制作用显示出对 OAT3 的更高亲和力(rbOAT1,237.4 +/- 23;hOAT1,104.6 +/- 13.1;rbOAT3,52.4 +/- 7.6;hOAT3,31.6 +/- 6.6 微摩尔/升)。为了确定 DMPSH 和 DMPSS 是否为 OAT3 的底物,我们进行了[14C]戊二酸的外排研究和戊二酸的内向梯度。抑制剂反式刺激[14C]戊二酸的外排,表明 OAT3 可能能够转运两种形式的 DMPS。基于 OAT3 与 DMPSS 的大量相互作用,我们得出结论,OAT3 代表 DMPS 应用于肾脏解毒过程中基底外侧的主要参与者。