Lash Lawrence H, Putt David A, Xu Feng, Matherly Larry H
Department of Pharmacology, Wayne State University School of Medicine, 540 East Canfield Avenue, Detroit, MI 48201, United States.
Chem Biol Interact. 2007 Nov 20;170(2):124-34. doi: 10.1016/j.cbi.2007.07.004. Epub 2007 Jul 19.
The tripeptide GSH is important in maintenance of renal redox status and defense against reactive electrophiles and oxidants. Previous studies showed that GSH is transported across the basolateral plasma membrane (BLM) into the renal proximal tubule by both sodium-coupled and sodium-independent pathways. Substrate specificity and inhibitor studies suggested the function of several carriers, including organic anion transporter 3 (Oat3). To test the hypothesis that rat Oat3 can function in renal GSH transport, the cDNA for rat Oat3 was expressed as a His6-tagged protein in E. coli, purified from inclusion bodies and by Ni2+-affinity chromatography, and reconstituted into proteoliposomes. cDNA-expressed and reconstituted Oat3 transported both GSH and p-aminohippurate (PAH) in exchange for 2-oxoglutarate (2-OG) and 2-OG and PAH in exchange for GSH, and PAH uptake was inhibited by both probenecid and furosemide, consistent with function of Oat3. mRNA expression of Oat3 and several other potential carriers was detected by RT-PCR in rat kidney cortex but was absent from NRK-52E cells, a rat proximal tubular cell line. Basolateral uptake of GSH in NRK-52E cells showed little PAH- or 2-OG-stimulated uptake. We conclude that Oat3 can function in GSH uptake and that NRK-52E cells possess a low background rate of GSH uptake, making these cells a good model for overexpression of specific, putative GSH carriers.
三肽谷胱甘肽(GSH)对于维持肾脏氧化还原状态以及抵御活性亲电试剂和氧化剂至关重要。先前的研究表明,GSH通过钠偶联和非钠依赖途径跨基底外侧质膜(BLM)转运至肾近端小管。底物特异性和抑制剂研究提示了几种载体的功能,包括有机阴离子转运体3(Oat3)。为了验证大鼠Oat3可在肾脏GSH转运中发挥作用这一假说,将大鼠Oat3的cDNA作为His6标签蛋白在大肠杆菌中表达,从包涵体中纯化并通过Ni2+亲和层析法进行纯化,然后重构成蛋白脂质体。cDNA表达并重构的Oat3以2-氧代戊二酸(2-OG)交换转运GSH和对氨基马尿酸(PAH),以GSH交换转运2-OG和PAH,并且丙磺舒和呋塞米均抑制PAH摄取,这与Oat3的功能一致。通过RT-PCR在大鼠肾皮质中检测到Oat3和其他几种潜在载体的mRNA表达,但在大鼠近端肾小管细胞系NRK-52E细胞中未检测到。NRK-52E细胞中GSH的基底外侧摄取几乎没有PAH或2-OG刺激的摄取。我们得出结论,Oat3可在GSH摄取中发挥作用,并且NRK-52E细胞具有较低的GSH摄取背景率,这使得这些细胞成为过表达特定的、假定的GSH载体的良好模型。