Köttgen Michael, Buchholz Björn, Garcia-Gonzalez Miguel A, Kotsis Fruzsina, Fu Xiao, Doerken Mara, Boehlke Christopher, Steffl Daniel, Tauber Robert, Wegierski Tomasz, Nitschke Roland, Suzuki Makoto, Kramer-Zucker Albrecht, Germino Gregory G, Watnick Terry, Prenen Jean, Nilius Bernd, Kuehn E Wolfgang, Walz Gerd
Renal Division, University Hospital Freiburg, 79106 Freiburg, Germany.
J Cell Biol. 2008 Aug 11;182(3):437-47. doi: 10.1083/jcb.200805124.
The primary cilium has evolved as a multifunctional cellular compartment that decorates most vertebrate cells. Cilia sense mechanical stimuli in various organs, but the molecular mechanisms that convert the deflection of cilia into intracellular calcium transients have remained elusive. Polycystin-2 (TRPP2), an ion channel mutated in polycystic kidney disease, is required for cilia-mediated calcium transients but lacks mechanosensitive properties. We find here that TRPP2 utilizes TRPV4 to form a mechano- and thermosensitive molecular sensor in the cilium. Depletion of TRPV4 in renal epithelial cells abolishes flow-induced calcium transients, demonstrating that TRPV4, like TRPP2, is an essential component of the ciliary mechanosensor. Because TRPV4-deficient zebrafish and mice lack renal cysts, our findings challenge the concept that defective ciliary flow sensing constitutes the fundamental mechanism of cystogenesis.
初级纤毛已演变成一个装饰大多数脊椎动物细胞的多功能细胞区室。纤毛可感知各种器官中的机械刺激,但将纤毛的偏转转化为细胞内钙瞬变的分子机制仍不清楚。多囊蛋白-2(TRPP2)是一种在多囊肾病中发生突变的离子通道,是纤毛介导的钙瞬变所必需的,但缺乏机械敏感特性。我们在此发现,TRPP2利用TRPV4在纤毛中形成一个机械和热敏分子传感器。肾上皮细胞中TRPV4的缺失消除了流动诱导的钙瞬变,表明TRPV4与TRPP2一样,是纤毛机械传感器的重要组成部分。由于缺乏TRPV4的斑马鱼和小鼠没有肾囊肿,我们的发现挑战了有缺陷的纤毛流动感知构成囊肿形成基本机制的概念。