Department of Pharmaceutics, Rutgers, The State University of New Jersey, Piscataway, New Jersey 08854, USA.
J Pharmacol Exp Ther. 2010 Jun;333(3):970-5. doi: 10.1124/jpet.110.165472. Epub 2010 Mar 18.
Human organic anion transporter (hOAT) 3 belongs to a family of organic anion transporters that play critical roles in the body disposition of numerous clinically important drugs. In the current study, we examined the regulation of hOAT3 by peptide hormone bradykinin (BK) in COS-7 cells. BK (<or=500 nM) induced a concentration- and time-dependent stimulation of hOAT3 activity, kinetically revealed as an increased V(max). Such an increase in V(max) resulted from an increased cell surface expression without a change in total cell expression of the transporter. BK-induced stimulation of hOAT3 activity could be prevented by treating hOAT3-expressing cells with staurosporine, a general inhibitor for protein kinase C (PKC). To obtain further information on which PKC isoform mediates BK regulation of hOAT3 activity, cellular distribution of various PKC isoforms was examined in cells treated with BK. We showed that BK treatment resulted in a significant translocation of PKCdelta, PKCepsilon, and PKCzeta from cytosol to membrane. We further showed that BK treatment enhanced association of hOAT3 with PKCdelta, PKCepsilon, and PKCzeta and that isoform-specific inhibitor for PKCdelta, PKCepsilon, and PKCzeta reversed BK effect on hOAT3 activity. We therefore concluded that BK stimulated hOAT3 activity through activation of PKCdelta, PKCepsilon, and PKCzeta, which then led to the redistribution of hOAT3 from the intracellular compartments to the cell surface and to the up-regulation of hOAT3 activity.
人有机阴离子转运蛋白(hOAT)3 属于有机阴离子转运蛋白家族,在许多临床重要药物在体内的处置中发挥关键作用。在本研究中,我们在 COS-7 细胞中研究了肽激素缓激肽(BK)对 hOAT3 的调节。BK(<或=500 nM)诱导 hOAT3 活性呈浓度和时间依赖性刺激,动力学表现为 Vmax 增加。这种 Vmax 的增加是由于细胞表面表达的增加,而转运体的总细胞表达没有变化。用蛋白激酶 C(PKC)的通用抑制剂 staurosporine 处理表达 hOAT3 的细胞,可以防止 BK 诱导的 hOAT3 活性刺激。为了获得关于哪种 PKC 同工型介导 BK 对 hOAT3 活性的调节的进一步信息,研究了 BK 处理的细胞中各种 PKC 同工型的细胞内分布。我们表明,BK 处理导致 PKCdelta、PKCepsilon 和 PKCzeta 从细胞质向膜的显著易位。我们进一步表明,BK 处理增强了 hOAT3 与 PKCdelta、PKCepsilon 和 PKCzeta 的结合,并且 PKCdelta、PKCepsilon 和 PKCzeta 的同工型特异性抑制剂逆转了 BK 对 hOAT3 活性的影响。因此,我们得出结论,BK 通过激活 PKCdelta、PKCepsilon 和 PKCzeta 刺激 hOAT3 活性,从而导致 hOAT3 从细胞内隔室重新分布到细胞表面,并上调 hOAT3 活性。