The extracellular Ca2+-sensing receptor (CaR) is a key-player in plasma Ca2+ homeostasis. It is essentially expressed in the parathyroid glands and along the kidney nephron. The distal convoluted tubules (DCT) and connecting tubules (CNT) in the kidney are involved in active Ca2+ reabsorption, but the function of the CaR has remained unclear in these segments. Here, the Ca2+-selective Transient Receptor Potential Vanilloid-subtype 5 channel (TRPV5) determines active Ca2+ reabsorption by forming the apical entry gate. In this study we show that the CaR and TRPV5 co-localize at the luminal membrane of DCT/CNT. Furthermore, by patch-clamp and Fura-2-ratiometric measurements we demonstrate that activation of the CaR leads to elevated TRPV5-medi...
In this work, we studied G protein-coupled Extracellular Calcium Sensing Receptor (CaR) signaling in...
To provide a cell model for studying specifically the regulation of Ca2+ entry by the epithelial cal...
Item does not contain fulltextTo provide a cell model for studying specifically the regulation of Ca...
The extracellular Ca2+-sensing receptor (CaR) is a key-player in plasma Ca2+ homeostasis. It is esse...
The extracellular Ca2+-sensing receptor (CaR) is a key-player in plasma Ca2+ homeostasis. It is esse...
The extracellular Ca(2+)-sensing receptor (CaR) is a key-player in plasma Ca(2+) homeostasis. It is ...
Contains fulltext : 79543.pdf (publisher's version ) (Closed access)The extracellu...
The epithelial Ca(2+) channel transient receptor potential cation channel V5 (TRPV5) constitutes the...
Contains fulltext : 57364.pdf (Publisher’s version ) (Open Access)The epithelial C...
Multiple cationic channels with variable selectivity for Ca(2+) , K(+) and Na(+) have been identifie...
Abstract Fine-tuning of renal calcium ion (Ca2+) reabsorp-tion takes place in the distal convoluted ...
The epithelial Ca2 channel transient receptor potential vanilloid 5 (TRPV5) constitutes the apical ...
Many physiological functions rely on the exact maintenance of body Ca2+ balance. Therefore, the extr...
The epithelial Ca2 channel transient receptor potential vanilloid 5 (TRPV5) constitutes the apical ...
The epithelial Ca(2+) channel TRPV5 constitutes the apical entry gate for Ca(2+) transport in renal ...
In this work, we studied G protein-coupled Extracellular Calcium Sensing Receptor (CaR) signaling in...
To provide a cell model for studying specifically the regulation of Ca2+ entry by the epithelial cal...
Item does not contain fulltextTo provide a cell model for studying specifically the regulation of Ca...
The extracellular Ca2+-sensing receptor (CaR) is a key-player in plasma Ca2+ homeostasis. It is esse...
The extracellular Ca2+-sensing receptor (CaR) is a key-player in plasma Ca2+ homeostasis. It is esse...
The extracellular Ca(2+)-sensing receptor (CaR) is a key-player in plasma Ca(2+) homeostasis. It is ...
Contains fulltext : 79543.pdf (publisher's version ) (Closed access)The extracellu...
The epithelial Ca(2+) channel transient receptor potential cation channel V5 (TRPV5) constitutes the...
Contains fulltext : 57364.pdf (Publisher’s version ) (Open Access)The epithelial C...
Multiple cationic channels with variable selectivity for Ca(2+) , K(+) and Na(+) have been identifie...
Abstract Fine-tuning of renal calcium ion (Ca2+) reabsorp-tion takes place in the distal convoluted ...
The epithelial Ca2 channel transient receptor potential vanilloid 5 (TRPV5) constitutes the apical ...
Many physiological functions rely on the exact maintenance of body Ca2+ balance. Therefore, the extr...
The epithelial Ca2 channel transient receptor potential vanilloid 5 (TRPV5) constitutes the apical ...
The epithelial Ca(2+) channel TRPV5 constitutes the apical entry gate for Ca(2+) transport in renal ...
In this work, we studied G protein-coupled Extracellular Calcium Sensing Receptor (CaR) signaling in...
To provide a cell model for studying specifically the regulation of Ca2+ entry by the epithelial cal...
Item does not contain fulltextTo provide a cell model for studying specifically the regulation of Ca...