Journal of Biological Chemistry · 1996 · 51 citations · 19 references
Protein SecretionCftr Chloride ChannelMolecular BiologyCftr ChannelCellular PhysiologyMembrane TransportSecretory PathwayCell SignalingMolecular PhysiologyBiochemistryPhosphorylation-dependent BlockMembrane SystemProtein TransportCell BiologySignal TransductionNatural SciencesExon 13Intracellular TraffickingCellular BiochemistrySystems BiologyMedicine
The cystic fibrosis transmembrane conductance regulator (CFTR) constitutes a linear conductance chloride channel, which is regulated by cAMP-dependent protein kinase phosphorylation at multiple sites located in the intracellular regulatory (R) domain. Studies in a lipid bilayer system, reported here, provide evidence for the control of CFTR chloride channel by its R domain. The exogenous R domain protein (encoded by exon 13 plus 85 base pairs of exon 14) interacted specifically with the CFTR molecule and inhibited the chloride conductance in a phosphorylation-dependent manner. Only the unphosphorylated R domain protein blocked the CFTR channel. Such functional interaction suggests that the putative gating particle of the CFTR chloride channel resides in the R domain.
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Identification of the Cystic Fibrosis Gene: Cloning and Characterization of Complementary DNA
John R. Riordan, Johanna M. Rommens, Bat-Sheva Kerem et al. · Science · 1989 · 7.4K citations