首页> 外文期刊>Journal of the American Society of Nephrology: JASN >Modulation of renal apical organic anion transporter 4 function by two PDZ domain-containing proteins.
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Modulation of renal apical organic anion transporter 4 function by two PDZ domain-containing proteins.

机译:两种包含PDZ域的蛋白质对肾根尖有机阴离子转运蛋白4的功能的调节。

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摘要

Human organic anion transporter 4 (OAT4) is an apical organic anion/dicarboxylate exchanger in the renal proximal tubules and mediates high-affinity transport of steroid sulfates such as estrone-3-sulfate (E1S) and dehydroepiandrosterone sulfate. Here, two multivalent PDZ (PSD-95/Discs Large/ZO-1) proteins PDZK1 and NHERF1 were examined as interactors of OAT4 by a yeast two-hybrid assay. These interactions require the extreme C-terminal region of OAT4 and the first and fourth PDZ domains of PDZK1 and the first PDZ domain of NHERF1. These interactions were confirmed by surface plasmon resonance assays (K(D): 36 nM, 1.2 microM, and 41.7 microM, respectively). In vitro binding assays and co-immunoprecipitation studies revealed that the OAT4 wild-type but not a mutant lacking the PDZ motif interacted directly with both PDZK1 and NHERF1. OAT4, PDZK1, and NHERF1 proteins were shown to be localized at the apical membrane of renal proximal tubules. The association with PDZK1 or NHERF1 enhanced OAT4-mediated E1S transport activities in HEK293 cells (1.2- to 1.4-fold), and the deletion of the OAT4 C-terminal PDZ motif abolished this effect. The augmentation of the transport activity was accompanied by alteration in V(max) of E(1)S transport via OAT4 and was associated with the increased surface expression level of OAT4 protein. This study indicates that the functional activity of OAT4 is modulated through the PDZ interaction with the network of PDZK1 and NHERF1 and suggests that OAT4 is involved in the regulated apical organic anion handling in the renal proximal tubules, provided by the PDZ scaffold.
机译:人有机阴离子转运蛋白4(OAT4)是肾近端小管中的根尖有机阴离子/二羧酸酯交换剂,可介导甾族硫酸盐(如雌酮-3-硫酸盐(E1S)和硫酸脱氢表雄酮)的高亲和力转运。在这里,两个多价PDZ(PSD-95 / Discs大/ ZO-1)蛋白PDZK1和NHERF1通过酵母双杂交检测作为OAT4的相互作用物进行了检查。这些相互作用需要OAT4的极端C端区域,PDZK1的第一个和第四个PDZ域以及NHERF1的第一个PDZ域。这些相互作用通过表面等离振子共振测定法确认(K(D):分别为36 nM,1.2 microM和41.7 microM)。体外结合测定和免疫共沉淀研究表明,OAT4野生型而非缺少PDZ基序的突变体直接与PDZK1和NHERF1相互作用。 OAT4,PDZK1和NHERF1蛋白显示位于肾近端小管的顶膜。与PDZK1或NHERF1的结合增强了HEK293细胞中OAT4介导的E1S转运活性(1.2至1.4倍),并且OAT4 C端PDZ基序的缺失消除了这种作用。转运活性的增加伴随着通过OAT4的E(1)S转运的V(max)的改变,并且与OAT4蛋白质表面表达水平的提高有关。这项研究表明,OAT4的功能活性是通过PDZ与PDZK1和NHERF1的网络相互作用来调节的,并表明OAT4参与了由PDZ支架提供的肾近端小管中受调节的根尖有机阴离子的处理。

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