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Claudin-16 affects transcellular Cl− secretion in MDCK cells

机译:Claudin-16影响MDCK细胞中的跨细胞Cl-分泌

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摘要

Claudin-16 (paracellin-1) is a tight junction protein localized mainly in the thick ascending limb of Henle's loop and also in the distal nephron. Its defect causes familial hypomagnesaemia with hypercalciuria and nephrocalcinosis. This had been taken as an indication that claudin-16 conveys paracellular Mg2+ and Ca2+ transport; however, evidence is still conflicting. We studied paracellular ion permeabilties as well as effects of claudin-16 on the driving forces for passive ion movement. MDCK-C7 cells were stably transfected with wild-type (wt) and mutant (R146T, T233R) claudin-16. Results indicated that paracellular permeability to Mg2+ but not to Ca2+ is increased in cells transfected with wt compared to mutant claudin-16 and control cells. Increased basolateral Mg2+ concentration activated a transcellular Cl− current which was greatly enhanced in cells transfected with wt and T233R claudin-16, as compared to R146T claudin-16-transfected or control cells. This current was triggered by the basolateral calcium-sensing receptor causing Ca2+ release from internal stores, thus activating apical Ca2+-sensitive Cl− channels and basolateral Ca2+-sensitive K+ channels. Immunohistochemical data suggest that the Cl− channel involved is bestrophin. We conclude that claudin-16 itself possesses only moderate paracellular Mg2+ permeability but governs transcellular Cl− currents by interaction with apical Ca2+-activated Cl− channels, presumably bestrophin. As the transepithelial voltage generated by such a current alters the driving force for all ions, this may be the major mechanism to regulate Mg2+ and Ca2+ absorption in the kidney.
机译:Claudin-16(paracellin-1)是一种紧密连接蛋白,主要定位在Henle's loop的较厚上升肢以及远端肾单位中。其缺陷引起家族性低镁血症,伴高钙尿症和肾钙化。这已被视为claudin-16可以传递细胞旁的Mg2 +和Ca2 +的信号。但是,证据仍然相互矛盾。我们研究了细胞旁离子通透性以及claudin-16对被动离子运动的驱动力的影响。用野生型(wt)和突变体(R146T,T233R)claudin-16稳定转染MDCK-C7细胞。结果表明,与突变型claudin-16和对照细胞相比,用wt转染的细胞对Mg2 +的细胞通透性提高,但对Ca2 +的通透性却提高。与R146T claudin-16转染或对照细胞相比,增加的基底外侧Mg2 +浓度激活了跨细胞Cl-电流,在用wt和T233R claudin-16转染的细胞中,跨细胞Cl-电流大大增强。该电流由基底外侧钙敏感受体触发,导致Ca2 +从内部储存区释放,从而激活了顶端Ca2 +敏感的Cl-通道和基底外侧Ca2 +敏感的K +通道。免疫组织化学数据表明,所涉及的Cl-通道是Bestrophin。我们得出的结论是,claudin-16本身仅具有中等程度的细胞旁Mg2 +渗透性,但通过与顶端Ca2 +激活的Cl-通道(可能是Bestrophin)相互作用来控制跨细胞的Cl-电流。由于这种电流产生的跨上皮电压改变了所有离子的驱动力,这可能是调节肾脏中Mg2 +和Ca2 +吸收的主要机制。

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