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IRBIT coordinates epithelial fluid and HCO3– secretion by stimulating the transporters pNBC1 and CFTR in the murine pancreatic duct
Dongki Yang, … , Katsuhiko Mikoshiba, Shmuel Muallem
Dongki Yang, … , Katsuhiko Mikoshiba, Shmuel Muallem
Published December 1, 2008
Citation Information: J Clin Invest. 2009;119(1):193-202. https://doi.org/10.1172/JCI36983.
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Research Article

IRBIT coordinates epithelial fluid and HCO3– secretion by stimulating the transporters pNBC1 and CFTR in the murine pancreatic duct

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Abstract

Fluid and HCO3– secretion are vital functions of secretory epithelia. In most epithelia, this entails HCO3– entry at the basolateral membrane, mediated by the Na+-HCO3– cotransporter, pNBC1, and exit at the luminal membrane, mediated by a CFTR-SLC26 transporters complex. Here we report that the protein IRBIT (inositol-1,4,5-trisphosphate [IP3] receptors binding protein released with IP3), a previously identified activator of pNBC1, activates both the basolateral pNBC1 and the luminal CFTR to coordinate fluid and HCO3– secretion by the pancreatic duct. We used video microscopy and ion selective microelectrodes to measure fluid secretion and Cl– and HCO3– concentrations in cultured murine sealed intralobular pancreatic ducts. Short interference RNA–mediated knockdown of IRBIT markedly inhibited ductal pNBC1 and CFTR activities, luminal Cl– absorption and HCO3– secretion, and the associated fluid secretion. Single-channel measurements suggested that IRBIT regulated CFTR by reducing channel mean close time. Furthermore, expression of IRBIT constructs in HEK cells revealed that activation of pNBC1 required only the IRBIT PEST domain, while activation of CFTR required multiple IRBIT domains, suggesting that IRBIT activates these transporters by different mechanisms. These findings define IRBIT as a key coordinator of epithelial fluid and HCO3– secretion and may have implications to all CFTR-expressing epithelia and to cystic fibrosis.

Authors

Dongki Yang, Nikolay Shcheynikov, Weizhong Zeng, Ehud Ohana, Insuk So, Hideaki Ando, Akihiro Mizutani, Katsuhiko Mikoshiba, Shmuel Muallem

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Figure 6

Role of IRBIT domains in interaction with and activation of CFTR.

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Role of IRBIT domains in interaction with and activation of CFTR.
(A) A ...
(A) A model of the IRBIT domains and the coimmunoprecipitation of IRBIT and CFTR is shown. HEK cells were transfected with a 1:1 ratio of CFTR and the IRBIT truncation mutants or the IRBIT mutants alone (controls) and were used to IP CFTR and blot for IRBIT (upper blots) or IP IRBIT and blot for CFTR (lower blots). ΔCC, IRBITΔCC; ΔPEST, IRBITΔPEST; ΔCCΔ4, IRBITΔCCΔ4. (B) Example traces of CFTR current in HEK cells transfected with CFTR and the indicated IRBIT mutants at a 1:3 ratio are shown. The turquoise trace in the right is from a cell treated with IRBIT siRNA. (C) The current density calculated in pA/pF (mean ± SEM). The number of experiments is listed on the columns. (D) The coimmunoprecipitation of IRBIT and CFTR in cells transfected either with CFTR or with CFTRΔ4 and the indicated IRBIT constructs at a 1:3 ratio are shown. (E) Example traces of current measured in cells transfected with CFTRΔ4 or CFTRΔ4 and IRBIT at a 1:3 ratio. (F) The current density calculated in pA/pF (mean ± SEM). The number of experiments is listed on the columns.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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