首页> 外文期刊>American Journal of Physiology >Sodium-dependent methotrexate carrier-1 is expressed in rat kidney: cloning and functional characterization.
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Sodium-dependent methotrexate carrier-1 is expressed in rat kidney: cloning and functional characterization.

机译:依赖钠的甲氨蝶呤载体-1在大鼠肾脏中表达:克隆和功能表征。

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摘要

Previous Northern blot studies suggested strong expression of a homolog to the sodium-dependent hepatocellular methotrexate transporter in the kidneys. Here, we report on the cloning of the cDNA for the renal methotrexate carrier isoform-1 (RK-MTX-1) and its functional characterization. Sequencing revealed 97% homology to the rat liver methotrexate carrier with an identical open reading frame. Differences were located in the 5'-untranslated region and resulted in the absence of putative regulatory elements (Barbie box, Ah/ARNT receptor) identified in the cDNA for the hepatocellular carrier. For functional characterization, MTX-1 cDNA was stably expressed in Madin-Darby canine kidney (MDCK) cells. A sodium-dependent transport of methotrexate with a K(m) of 41 microM and a V(max) of 337 pmol.mg protein(-1).min(-1) was observed. This uptake was blocked by the reduced folates dihydro- and tetrahydrofolate as well as by methotrexate itself. Folate was inhibiting only weakly, whereas 5-methyltetrahydrofolatewas a strong inhibitor. Further inhibitors of the methotrexate transport included the bile acids cholate and taurocholate and xenobiotics like bumetanide and BSP. PAH, ouabain, bumetanide, cholate, taurocholate, and acetyl salicylic acid were tested as potential substrates. However, none of these substances was transported by MTX-1. Furthermore, expression of RK-MTX-1 in MDCK cells enhanced methotrexate toxicity in these cells fivefold. Analysis of a fusion protein of RK-MTX-1 and the influenza virus hemagglutinin epitope by immunoblotting revealed a major band at 72 kDa within the cell membrane but not in the soluble fraction of transfected MDCK. Indirect immunofluorescence staining revealed an exclusive localization of the carrier in the plasma membrane, and by confocal laser-scanning microscopy we were able to demonstrate that the protein is expressed in the serosal region of MDCK tubules grown in a morphogenic collagen gel model.
机译:先前的Northern印迹研究表明,肾脏中钠依赖性肝细胞甲氨蝶呤转运蛋白的同系物表达很强。在这里,我们报告的肾甲氨蝶呤载体isoform-1(RK-MTX-1)的cDNA克隆及其功能表征。测序显示与大鼠肝脏甲氨蝶呤载体具有97%的同源性,并具有相同的开放阅读框。差异位于5'非翻译区,并导致在肝细胞载体的cDNA中不存在推定的调控元件(芭比盒,Ah / ARNT受体)。为了功能鉴定,MTX-1 cDNA在Madin-Darby犬肾(MDCK)细胞中稳定表达。观察到甲氨蝶呤的钠依赖性转运,其K(m)为41 microM,V(max)为337 pmol.mg蛋白(-1).min(-1)。这种吸收被还原的叶酸二氢和四氢叶酸以及甲氨蝶呤本身阻止。叶酸抑制作用很弱,而5-甲基四氢叶酸抑制作用强。甲氨蝶呤转运的其他抑制剂包括胆汁酸胆酸盐和牛磺胆酸盐以及异种生物,如布美他尼和BSP。测试了PAH,哇巴因,布美他尼,胆酸盐,牛磺胆酸盐和乙酰水杨酸作为潜在的底物。但是,这些物质均未通过MTX-1转运。此外,在MDCK细胞中RK-MTX-1的表达将氨甲蝶呤的毒性提高了五倍。通过免疫印迹分析RK-MTX-1和流感病毒血凝素表位的融合蛋白,发现在细胞膜内有一个72 kDa的主要条带,但在转染的MDCK的可溶性部分却没有。间接免疫荧光染色揭示了载体在质膜中的排他性定位,并且通过共聚焦激光扫描显微镜,我们能够证明蛋白质在形成形态的胶原蛋白凝胶模型中生长的MDCK小管的浆膜区域表达。

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