Author:
Seavilleklein Gage,Amer Noha,Evagelidis Alexandra,Chappe Frédéric,Irvine Thomas,Hanrahan John W.,Chappe Valérie
Abstract
Activity of the CFTR channel is regulated by phosphorylation of its regulatory domain (RD). In a previous study, we developed a bicistronic construct called ΔR-Split CFTR, which encodes the front and back halves of CFTR as separate polypeptides without the RD. These fragments assemble to form a constitutively active CFTR channel. Coexpression of the third fragment corresponding to the missing RD restores regulation by PKA, and this is associated with dramatically enhanced binding of the phosphorylated RD. In the present study, we examined the effect of PKC phosphorylation on this PKA-induced interaction. We report here that PKC alone enhanced association of the RD with ΔR-Split CFTR and that binding was further enhanced when the RD was phosphorylated by both kinases. Mutation of all seven PKC consensus sequences on the RD (7CA-RD) did not affect its association under basal (unphosphorylated) conditions but abolished phosphorylation-induced binding by both kinases. Iodide efflux responses provided further support for the essential role of RD binding in channel regulation. The basal activity of ΔR-Split/7CA-RD channels was similar to that of ΔR-Split/wild type (WT)-RD channels, whereas cAMP-stimulated iodide efflux was greatly diminished by removal of the PKC sites, indicating that 7CA-RD binding maintains channels in an inactive state that is unresponsive to PKA. These results suggest a novel mechanism for CFTR regulation in which PKC modulates PKA-induced domain-domain interactions.
Publisher
American Physiological Society
Reference32 articles.
1. CFTR regulatory region interacts with NBD1 predominantly via multiple transient helices
2. Becq F, Auzanneau C, Norez C, Dérand R, Bulteau-Pignoux L.Radiotracer flux method to study CFTR channel activity: regulation, pharmacology and drug discovery.European Working Group on CFTR ExpressionD5: 1–13, 2003.
3. Berger HA, Travis SM, Welsh MJ.Regulation of the cystic fibrosis transmembrane conductance regulator Cl−channel by specific protein kinases and protein phosphatases.J Biol Chem268: 2037–2047, 1993.
4. Chang XB, Tabcharani JA, Hou YX, Jensen TJ, Kartner N, Alon N, Hanrahan JW, Riordan JR.Protein kinase A (PKA) still activates CFTR chloride channel after mutagenesis of all 10 PKA consensus phosphorylation sites.J Biol Chem268: 11304–11311, 1993.
5. Stimulatory and inhibitory protein kinase C consensus sequences regulate the cystic fibrosis transmembrane conductance regulator
Cited by
32 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献