Gkika Dimitra, Topala Catalin N, Chang Qing, Picard Nicolas, Thébault Stéphanie, Houillier Pascal, Hoenderop Joost G J, Bindels René J M
Department of Physiology, Nijmegen Centre for Molecular Life Sciences, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.
EMBO J. 2006 Oct 18;25(20):4707-16. doi: 10.1038/sj.emboj.7601357. Epub 2006 Sep 28.
The transient receptor potential vanilloid 5 (TRPV5) channel determines urinary Ca(2+) excretion, and is therefore critical for Ca(2+) homeostasis. Interestingly, mice lacking the serine protease tissue kallikrein (TK) exhibit robust hypercalciuria comparable to the Ca(2+) leak in TRPV5 knockout mice. Here, we delineated the molecular mechanism through which TK stimulates Ca(2+) reabsorption. Using TRPV5-expressing primary cultures of renal Ca(2+)-transporting epithelial cells, we showed that TK activates Ca(2+) reabsorption. The stimulatory effect of TK was mimicked by bradykinin (BK) and could be reversed by application of JE049, a BK receptor type 2 antagonist. A cell permeable analog of DAG increased TRPV5 activity within 30 min via protein kinase C activation of the channel since mutation of TRPV5 at the putative PKC phosphorylation sites S299 and S654 prevented the stimulatory effect of TK. Cell surface labeling revealed that TK enhances the amount of wild-type TRPV5 channels, but not of the TRPV5 S299A and S654A mutants, at the plasma membrane by delaying its retrieval. In conclusion, TK stimulates Ca(2+) reabsorption via the BK-activated PLC/DAG/PKC pathway and the subsequent stabilization of the TRPV5 channel at the plasma membrane.
瞬时受体电位香草酸亚型5(TRPV5)通道决定尿钙排泄,因此对钙稳态至关重要。有趣的是,缺乏丝氨酸蛋白酶组织激肽释放酶(TK)的小鼠表现出强烈的高钙尿症,与TRPV5基因敲除小鼠的钙泄漏相当。在此,我们阐明了TK刺激钙重吸收的分子机制。利用表达TRPV5的肾钙转运上皮细胞原代培养物,我们发现TK可激活钙重吸收。缓激肽(BK)可模拟TK的刺激作用,而应用BK2型受体拮抗剂JE049可逆转该作用。一种细胞可渗透的二酰甘油类似物通过蛋白激酶C激活通道,在30分钟内增加TRPV5活性,因为TRPV5在假定的蛋白激酶C磷酸化位点S299和S654处的突变可阻止TK的刺激作用。细胞表面标记显示,TK通过延迟TRPV5从质膜的回收,增加了野生型TRPV5通道在质膜上的数量,但对TRPV5 S299A和S654A突变体没有影响。总之,TK通过BK激活的磷脂酶C/二酰甘油/蛋白激酶C途径以及随后TRPV5通道在质膜上的稳定来刺激钙重吸收。