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Channel Gating Regulation by the Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) First Cytosolic Loop

Authors :
Louise C. Pyle
Steve Aller
Hal A. Lewis
Wei Wang
Eric J. Sorscher
Gergely L. Lukacs
Shane Atwell
Christine E. Bear
W. Joon Chung
Annette Ehrhardt
Kryzysztof Nowotarski
Kevin L. Kirk
Cory M. Mulvihill
Jeong S. Hong
Mohabir Ramjeesingh
Sadanandan E. Velu
Source :
Journal of Biological Chemistry. 291:1854-1865
Publication Year :
2016
Publisher :
Elsevier BV, 2016.

Abstract

In this study, we present data indicating a robust and specific domain interaction between the cystic fibrosis transmembrane conductance regulator (CFTR) first cytosolic loop (CL1) and nucleotide binding domain 1 (NBD1) that allows ion transport to proceed in a regulated fashion. We used co-precipitation and ELISA to establish the molecular contact and showed that binding kinetics were not altered by the common clinical mutation F508del. Both intrinsic ATPase activity and CFTR channel gating were inhibited severely by CL1 peptide, suggesting that NBD1/CL1 binding is a crucial requirement for ATP hydrolysis and channel function. In addition to cystic fibrosis, CFTR dysregulation has been implicated in the pathogenesis of prevalent diseases such as chronic obstructive pulmonary disease, acquired rhinosinusitis, pancreatitis, and lethal secretory diarrhea (e.g. cholera). On the basis of clinical relevance of the CFTR as a therapeutic target, a cell-free drug screen was established to identify modulators of NBD1/CL1 channel activity independent of F508del CFTR and pharmacologic rescue. Our findings support a targetable mechanism of CFTR regulation in which conformational changes in the NBDs cause reorientation of transmembrane domains via interactions with CL1 and result in channel gating.

Details

ISSN :
00219258
Volume :
291
Database :
OpenAIRE
Journal :
Journal of Biological Chemistry
Accession number :
edsair.doi.dedup.....48e67c85caf3010f2c2149f230fd0fb4