Division of Nephrology, Department of Medicine, University of Texas Southwestern Medical Center, Dallas, Texas 75390-8856, USA.
J Biol Chem. 2010 Feb 26;285(9):6604-11. doi: 10.1074/jbc.M109.056044. Epub 2010 Jan 8.
WNK4 (with-no-lysine (K) kinase-4) is present in the distal nephron of the kidney and plays an important role in the regulation of renal ion transport. The epithelial Ca(2+) channel TRPV5 (transient receptor potential vanilloid 5) is the gatekeeper of transcellular Ca(2+) reabsorption in the distal nephron. Previously, we reported that activation of protein kinase C (PKC) increases cell-surface abundance of TRPV5 by inhibiting caveola-mediated endocytosis of the channel. Here, we report that WNK4 decreases cell-surface abundance of TRPV5 by enhancing its endocytosis. Deletion analysis revealed that stimulation of endocytosis of TRPV5 involves amino acids outside the kinase domain of WNK4. We also investigated interplay between WNK4 and PKC regulation of TRPV5. The maximal level of TRPV5 current density stimulated by the PKC activator 1-oleoyl-acetyl-sn-glycerol (OAG) is the same with or without WNK4. The relative increase of TRPV5 current stimulated by OAG, however, is greater in the presence of WNK4 compared with that without WNK4 (approximately 215% increase versus 60% increase above the level without OAG). Moreover, the rate of increase of TRPV5 by OAG is faster with WNK4 than without WNK4. The enhanced increase of TRPV5 in the presence of WNK4 is also observed when PKC is activated by parathyroid hormones. Thus, WNK4 exerts tonic inhibition of TRPV5 by stimulating caveola-mediated endocytosis. The lower basal TRPV5 level in the presence of WNK4 allows amplification of the stimulation of channel by PKC. This interaction between WNK4 and PKC regulation of TRPV5 may be important for physiological regulation of renal Ca(2+) reabsorption by parathyroid hormones or the tissue kallikrein in vivo.
WNK4(无赖氨酸激酶 4)存在于肾脏的远曲小管中,在调节肾脏离子转运中发挥着重要作用。上皮钙通道 TRPV5(瞬时受体电位香草酸 5)是远曲小管细胞内钙重吸收的门户。先前,我们报道蛋白激酶 C(PKC)的激活通过抑制通道的小窝介导内吞作用增加 TRPV5 的细胞表面丰度。在这里,我们报告 WNK4 通过增强其内吞作用来降低 TRPV5 的细胞表面丰度。删除分析表明,TRPV5 的内吞作用涉及 WNK4 激酶结构域外的氨基酸。我们还研究了 WNK4 和 PKC 对 TRPV5 调节的相互作用。PKC 激活剂 1-油酰基-乙酰基-sn-甘油(OAG)刺激的 TRPV5 电流密度的最大水平与有无 WNK4 相同。然而,与没有 WNK4 相比,OAG 刺激的 TRPV5 电流的相对增加在存在 WNK4 时更大(与没有 OAG 相比,增加约 215%对增加 60%)。此外,OAG 增加 TRPV5 的速度在存在 WNK4 时比没有 WNK4 时更快。当 PKC 被甲状旁腺激素激活时,也观察到 WNK4 存在时 TRPV5 的增加增强。WNK4 通过刺激小窝介导的内吞作用对 TRPV5 产生紧张性抑制。在存在 WNK4 的情况下,TRPV5 的基础水平较低,允许 PKC 对通道的刺激放大。WNK4 和 PKC 对 TRPV5 的调节之间的这种相互作用对于甲状旁腺激素或体内组织激肽对肾脏钙重吸收的生理调节可能很重要。