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Stabilizing Rescued Surface-Localized ΔF508 CFTR by Potentiation of Its Interaction with Na(+)/H(+) Exchanger Regulatory Factor 1

[Image: see text] Cystic fibrosis (CF) is a recessive genetic disease caused by mutations in CFTR, a plasma-membrane-localized anion channel. The most common mutation in CFTR, deletion of phenylalanine at residue 508 (ΔF508), causes misfolding of CFTR resulting in little or no protein at the plasma...

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Autores principales: Arora, Kavisha, Moon, Changsuk, Zhang, Weiqiang, Yarlagadda, Sunitha, Penmatsa, Himabindu, Ren, Aixia, Sinha, Chandrima, Naren, Anjaparavanda P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4081048/
https://www.ncbi.nlm.nih.gov/pubmed/24945463
http://dx.doi.org/10.1021/bi401263h
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author Arora, Kavisha
Moon, Changsuk
Zhang, Weiqiang
Yarlagadda, Sunitha
Penmatsa, Himabindu
Ren, Aixia
Sinha, Chandrima
Naren, Anjaparavanda P.
author_facet Arora, Kavisha
Moon, Changsuk
Zhang, Weiqiang
Yarlagadda, Sunitha
Penmatsa, Himabindu
Ren, Aixia
Sinha, Chandrima
Naren, Anjaparavanda P.
author_sort Arora, Kavisha
collection PubMed
description [Image: see text] Cystic fibrosis (CF) is a recessive genetic disease caused by mutations in CFTR, a plasma-membrane-localized anion channel. The most common mutation in CFTR, deletion of phenylalanine at residue 508 (ΔF508), causes misfolding of CFTR resulting in little or no protein at the plasma membrane. The CFTR corrector VX-809 shows promise for treating CF patients homozygous for ΔF508. Here, we demonstrate the significance of protein–protein interactions in enhancing the stability of the ΔF508 CFTR mutant channel protein at the plasma membrane. We determined that VX-809 prolongs the stability of ΔF508 CFTR at the plasma membrane. Using competition-based assays, we demonstrated that ΔF508 CFTR interacts poorly with Na(+)/H(+) exchanger regulatory factor 1 (NHERF1) compared to wild-type CFTR, and VX-809 significantly increased this binding affinity. We conclude that stabilized CFTR–NHERF1 interaction is a determinant of the functional efficiency of rescued ΔF508 CFTR. Our results demonstrate the importance of macromolecular-complex formation in stabilizing rescued mutant CFTR at the plasma membrane and suggest this to be foundational for the development of a new generation of effective CFTR-corrector-based therapeutics.
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spelling pubmed-40810482015-06-19 Stabilizing Rescued Surface-Localized ΔF508 CFTR by Potentiation of Its Interaction with Na(+)/H(+) Exchanger Regulatory Factor 1 Arora, Kavisha Moon, Changsuk Zhang, Weiqiang Yarlagadda, Sunitha Penmatsa, Himabindu Ren, Aixia Sinha, Chandrima Naren, Anjaparavanda P. Biochemistry [Image: see text] Cystic fibrosis (CF) is a recessive genetic disease caused by mutations in CFTR, a plasma-membrane-localized anion channel. The most common mutation in CFTR, deletion of phenylalanine at residue 508 (ΔF508), causes misfolding of CFTR resulting in little or no protein at the plasma membrane. The CFTR corrector VX-809 shows promise for treating CF patients homozygous for ΔF508. Here, we demonstrate the significance of protein–protein interactions in enhancing the stability of the ΔF508 CFTR mutant channel protein at the plasma membrane. We determined that VX-809 prolongs the stability of ΔF508 CFTR at the plasma membrane. Using competition-based assays, we demonstrated that ΔF508 CFTR interacts poorly with Na(+)/H(+) exchanger regulatory factor 1 (NHERF1) compared to wild-type CFTR, and VX-809 significantly increased this binding affinity. We conclude that stabilized CFTR–NHERF1 interaction is a determinant of the functional efficiency of rescued ΔF508 CFTR. Our results demonstrate the importance of macromolecular-complex formation in stabilizing rescued mutant CFTR at the plasma membrane and suggest this to be foundational for the development of a new generation of effective CFTR-corrector-based therapeutics. American Chemical Society 2014-06-19 2014-07-01 /pmc/articles/PMC4081048/ /pubmed/24945463 http://dx.doi.org/10.1021/bi401263h Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Arora, Kavisha
Moon, Changsuk
Zhang, Weiqiang
Yarlagadda, Sunitha
Penmatsa, Himabindu
Ren, Aixia
Sinha, Chandrima
Naren, Anjaparavanda P.
Stabilizing Rescued Surface-Localized ΔF508 CFTR by Potentiation of Its Interaction with Na(+)/H(+) Exchanger Regulatory Factor 1
title Stabilizing Rescued Surface-Localized ΔF508 CFTR by Potentiation of Its Interaction with Na(+)/H(+) Exchanger Regulatory Factor 1
title_full Stabilizing Rescued Surface-Localized ΔF508 CFTR by Potentiation of Its Interaction with Na(+)/H(+) Exchanger Regulatory Factor 1
title_fullStr Stabilizing Rescued Surface-Localized ΔF508 CFTR by Potentiation of Its Interaction with Na(+)/H(+) Exchanger Regulatory Factor 1
title_full_unstemmed Stabilizing Rescued Surface-Localized ΔF508 CFTR by Potentiation of Its Interaction with Na(+)/H(+) Exchanger Regulatory Factor 1
title_short Stabilizing Rescued Surface-Localized ΔF508 CFTR by Potentiation of Its Interaction with Na(+)/H(+) Exchanger Regulatory Factor 1
title_sort stabilizing rescued surface-localized δf508 cftr by potentiation of its interaction with na(+)/h(+) exchanger regulatory factor 1
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4081048/
https://www.ncbi.nlm.nih.gov/pubmed/24945463
http://dx.doi.org/10.1021/bi401263h
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