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Impairment of TRPC1–STIM1 channel assembly and AQP5 translocation compromise agonist-stimulated fluid secretion in mice lacking caveolin1
- Source :
- Journal of Cell Science. 126:667-675
- Publication Year :
- 2013
- Publisher :
- The Company of Biologists, 2013.
-
Abstract
- Summary Neurotransmitter regulation of salivary fluid secretion is mediated by activation of Ca2+ influx. The Ca2+-permeable transient receptor potential canonical 1 (TRPC1) channel is crucial for fluid secretion. However, the mechanism(s) involved in channel assembly and regulation are not completely understood. We report that Caveolin1 (Cav1) is essential for the assembly of functional TRPC1 channels in salivary glands (SG) in vivo and thus regulates fluid secretion. In Cav1−/− mouse SG, agonist-stimulated Ca2+ entry and fluid secretion are significantly reduced. Microdomain localization of TRPC1 and interaction with its regulatory protein, STIM1, are disrupted in Cav1−/− SG acinar cells, whereas Orai1–STIM1 interaction is not affected. Furthermore, localization of aquaporin 5 (AQP5), but not that of inositol (1,4,5)-trisphosphate receptor 3 or Ca2+-activated K+ channel (IK) in the apical region of acinar cell was altered in Cav1−/− SG. In addition, agonist-stimulated increase in surface expression of AQP5 required Ca2+ influx via TRPC1 channels and was inhibited in Cav1−/− SG. Importantly, adenovirus-mediated expression of Cav1 in Cav1−/− SG restored interaction of STIM1 with TRPC1 and channel activation, apical targeting and regulated trafficking of AQP5, and neurotransmitter stimulated fluid-secretion. Together these findings demonstrate that, by directing cellular localization of TRPC1 and AQP5 channels and by selectively regulating the functional assembly TRPC1–STIM1 channels, Cav1 is a crucial determinant of SG fluid secretion.
- Subjects :
- Caveolin 1
Saliva secretion
Biology
Transfection
TRPC1
Mice
Transient receptor potential channel
Microscopy, Electron, Transmission
Acinar cell
Animals
Humans
Secretion
Stromal Interaction Molecule 1
Cells, Cultured
Cellular localization
TRPC Cation Channels
Mice, Knockout
Membrane Glycoproteins
Voltage-dependent calcium channel
ORAI1
Membrane Proteins
Cell Biology
Immunohistochemistry
Aquaporin 5
Neoplasm Proteins
Cell biology
Calcium Channels
Research Article
Subjects
Details
- ISSN :
- 14779137 and 00219533
- Volume :
- 126
- Database :
- OpenAIRE
- Journal :
- Journal of Cell Science
- Accession number :
- edsair.doi.dedup.....fa3306e311b7c1a203792aade2a49eb6
- Full Text :
- https://doi.org/10.1242/jcs.118943