Zuidscherwoude Malou, Grigore Teodora, van de Langenberg Brenda, Witte Guusje, van der Wijst Jenny, Hoenderop Joost G
Department of Medical Biosciences, Research Institute for Medical Innovation, Radboud University Medical Center, Nijmegen, The Netherlands.
J Physiol. 2024 Dec;602(24):6871-6888. doi: 10.1113/JP286182. Epub 2024 Nov 22.
As a member of the transient receptor potential (TRP) superfamily of ion channels, TRPV5 is a unique Ca-selective channel important for active reabsorption of Ca in the kidney. TRPV5-mediated Ca entry into the cell is controlled by a negative feedback mechanism, in which calmodulin (CaM) blocks the TRPV5 pore upon Ca binding. Combining microscopy techniques and biochemical assays, the present study uncovered an auxiliary role for CaM in the regulation of human (h)TRPV5 intracellular trafficking. Overexpressed hTRPV5 was mainly localised to the endoplasmic reticulum (ER) and associated with peripheral ER tubules. Limiting expression using the HEK293 TET-off system revealed that hTRPV5 trafficked through the endocytic recycling pathway. CaM co-localised with hTRPV5 at intracellular sites and overexpression of CaM slowed hTRPV5 exit from the ER. In accordance, CaM binding-disrupting truncations of the TRPV5 C-terminus (698X) or knockdown of endogenous CaM by small interfering RNA resulted in an increased fraction of TRPV5 that localised to the plasma membrane. hTRPV5 expressing cells had an increased intracellular Ca concentration upon knockdown of CaM. The protein abundance of the Ca impermeable hTRPV5-D542 mutant is also regulated by CaM, which suggests that the mode of action is independent of disrupted intracellular calcium concentrations. In conclusion, our study reveals a novel role for CaM in Ca-dependent TRPV5 regulation, modulating TRPV5 intracellular trafficking. KEY POINTS: The renal Ca channel TRPV5 is a crucial player in maintenance of the body's Ca homeostasis. Ca transport through TRPV5 is controlled by single channel activity, as well as TRPV5 plasma membrane abundance. Calmodulin (CaM) co-localised with TRPV5 at intracellular sites and retained TRPV5 in the endoplasmic reticulum. Disrupted CaM-TRPV5 binding or knockdown of endogenous CaM by small interfering RNA (siRNA) resulted in an increased TRPV5 plasma membrane abundance. Knockdown of endogenous CaM by siRNA resulted in increased intracellular Ca concentrations. The regulation of TRPV5 trafficking by CaM is independent of the effect of CaM on intracellular Ca concentrations. This study reveals a novel role for CaM in Ca-dependent TRPV5 regulation, next to its ability to directly block the TRPV5 channel pore, by modulating TRPV5 trafficking in the secretory pathway.
作为离子通道瞬时受体电位(TRP)超家族的成员,TRPV5是一种独特的钙选择性通道,对肾脏中钙的主动重吸收很重要。TRPV5介导的钙进入细胞受负反馈机制控制,其中钙调蛋白(CaM)在结合钙后会阻断TRPV5孔道。结合显微镜技术和生化分析,本研究揭示了CaM在调节人(h)TRPV5细胞内运输中的辅助作用。过表达的hTRPV5主要定位于内质网(ER)并与外周ER小管相关。使用HEK293 TET-off系统限制表达表明hTRPV5通过内吞再循环途径运输。CaM在细胞内位点与hTRPV5共定位,CaM的过表达减缓了hTRPV5从内质网的流出。相应地,TRPV5 C末端的CaM结合破坏截短(698X)或通过小干扰RNA敲低内源性CaM导致定位于质膜的TRPV5比例增加。敲低CaM后,表达hTRPV5的细胞内钙浓度增加。钙不可渗透的hTRPV5-D542突变体的蛋白质丰度也受CaM调节,这表明其作用模式独立于细胞内钙浓度的破坏。总之,我们的研究揭示了CaM在钙依赖性TRPV5调节中的新作用,即调节TRPV5细胞内运输。要点:肾脏钙通道TRPV5是维持身体钙稳态的关键因素。通过TRPV5的钙运输受单通道活性以及TRPV5质膜丰度的控制。钙调蛋白(CaM)在细胞内位点与TRPV5共定位,并将TRPV5保留在内质网中。破坏CaM-TRPV5结合或通过小干扰RNA(siRNA)敲低内源性CaM导致TRPV5质膜丰度增加。通过siRNA敲低内源性CaM导致细胞内钙浓度增加。CaM对TRPV5运输的调节独立于CaM对细胞内钙浓度的影响。本研究揭示了CaM在钙依赖性TRPV5调节中的新作用,除了其直接阻断TRPV5通道孔道外,还通过调节分泌途径中的TRPV5运输来实现。