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Cystic fibrosis gene modifier SLC26A9 modulates airway response to CFTR-directed therapeutics

Cystic fibrosis is realizing the promise of personalized medicine. Recent advances in drug development that target the causal CFTR directly result in lung function improvement, but variability in response is demanding better prediction of outcomes to improve management decisions. The genetic modifie...

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Autores principales: Strug, Lisa J., Gonska, Tanja, He, Gengming, Keenan, Katherine, Ip, Wan, Boëlle, Pierre-Yves, Lin, Fan, Panjwani, Naim, Gong, Jiafen, Li, Weili, Soave, David, Xiao, Bowei, Tullis, Elizabeth, Rabin, Harvey, Parkins, Michael D., Price, April, Zuberbuhler, Peter C., Corvol, Harriet, Ratjen, Felix, Sun, Lei, Bear, Christine E., Rommens, Johanna M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5886039/
https://www.ncbi.nlm.nih.gov/pubmed/28171547
http://dx.doi.org/10.1093/hmg/ddw290
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author Strug, Lisa J.
Gonska, Tanja
He, Gengming
Keenan, Katherine
Ip, Wan
Boëlle, Pierre-Yves
Lin, Fan
Panjwani, Naim
Gong, Jiafen
Li, Weili
Soave, David
Xiao, Bowei
Tullis, Elizabeth
Rabin, Harvey
Parkins, Michael D.
Price, April
Zuberbuhler, Peter C.
Corvol, Harriet
Ratjen, Felix
Sun, Lei
Bear, Christine E.
Rommens, Johanna M.
author_facet Strug, Lisa J.
Gonska, Tanja
He, Gengming
Keenan, Katherine
Ip, Wan
Boëlle, Pierre-Yves
Lin, Fan
Panjwani, Naim
Gong, Jiafen
Li, Weili
Soave, David
Xiao, Bowei
Tullis, Elizabeth
Rabin, Harvey
Parkins, Michael D.
Price, April
Zuberbuhler, Peter C.
Corvol, Harriet
Ratjen, Felix
Sun, Lei
Bear, Christine E.
Rommens, Johanna M.
author_sort Strug, Lisa J.
collection PubMed
description Cystic fibrosis is realizing the promise of personalized medicine. Recent advances in drug development that target the causal CFTR directly result in lung function improvement, but variability in response is demanding better prediction of outcomes to improve management decisions. The genetic modifier SLC26A9 contributes to disease severity in the CF pancreas and intestine at birth and here we assess its relationship with disease severity and therapeutic response in the airways. SLC26A9 association with lung disease was assessed in individuals from the Canadian and French CF Gene Modifier consortia with CFTR-gating mutations and in those homozygous for the common Phe508del mutation. Variability in response to a CFTR-directed therapy attributed to SLC26A9 genotype was assessed in Canadian patients with gating mutations. A primary airway model system determined if SLC26A9 shows modification of Phe508del CFTR function upon treatment with a CFTR corrector. In those with gating mutations that retain cell surface-localized CFTR we show that SLC26A9 modifies lung function while this is not the case in individuals homozygous for Phe508del where cell surface expression is lacking. Treatment response to ivacaftor, which aims to improve CFTR-channel opening probability in patients with gating mutations, shows substantial variability in response, 28% of which can be explained by rs7512462 in SLC26A9 (P = 0.0006). When homozygous Phe508del primary bronchial cells are treated to restore surface CFTR, SLC26A9 likewise modifies treatment response (P = 0.02). Our findings indicate that SLC26A9 airway modification requires CFTR at the cell surface, and that a common variant in SLC26A9 may predict response to CFTR-directed therapeutics.
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spelling pubmed-58860392018-04-09 Cystic fibrosis gene modifier SLC26A9 modulates airway response to CFTR-directed therapeutics Strug, Lisa J. Gonska, Tanja He, Gengming Keenan, Katherine Ip, Wan Boëlle, Pierre-Yves Lin, Fan Panjwani, Naim Gong, Jiafen Li, Weili Soave, David Xiao, Bowei Tullis, Elizabeth Rabin, Harvey Parkins, Michael D. Price, April Zuberbuhler, Peter C. Corvol, Harriet Ratjen, Felix Sun, Lei Bear, Christine E. Rommens, Johanna M. Hum Mol Genet Association Studies Articles Cystic fibrosis is realizing the promise of personalized medicine. Recent advances in drug development that target the causal CFTR directly result in lung function improvement, but variability in response is demanding better prediction of outcomes to improve management decisions. The genetic modifier SLC26A9 contributes to disease severity in the CF pancreas and intestine at birth and here we assess its relationship with disease severity and therapeutic response in the airways. SLC26A9 association with lung disease was assessed in individuals from the Canadian and French CF Gene Modifier consortia with CFTR-gating mutations and in those homozygous for the common Phe508del mutation. Variability in response to a CFTR-directed therapy attributed to SLC26A9 genotype was assessed in Canadian patients with gating mutations. A primary airway model system determined if SLC26A9 shows modification of Phe508del CFTR function upon treatment with a CFTR corrector. In those with gating mutations that retain cell surface-localized CFTR we show that SLC26A9 modifies lung function while this is not the case in individuals homozygous for Phe508del where cell surface expression is lacking. Treatment response to ivacaftor, which aims to improve CFTR-channel opening probability in patients with gating mutations, shows substantial variability in response, 28% of which can be explained by rs7512462 in SLC26A9 (P = 0.0006). When homozygous Phe508del primary bronchial cells are treated to restore surface CFTR, SLC26A9 likewise modifies treatment response (P = 0.02). Our findings indicate that SLC26A9 airway modification requires CFTR at the cell surface, and that a common variant in SLC26A9 may predict response to CFTR-directed therapeutics. Oxford University Press 2016-10-15 2016-08-29 /pmc/articles/PMC5886039/ /pubmed/28171547 http://dx.doi.org/10.1093/hmg/ddw290 Text en © The Author 2016. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Association Studies Articles
Strug, Lisa J.
Gonska, Tanja
He, Gengming
Keenan, Katherine
Ip, Wan
Boëlle, Pierre-Yves
Lin, Fan
Panjwani, Naim
Gong, Jiafen
Li, Weili
Soave, David
Xiao, Bowei
Tullis, Elizabeth
Rabin, Harvey
Parkins, Michael D.
Price, April
Zuberbuhler, Peter C.
Corvol, Harriet
Ratjen, Felix
Sun, Lei
Bear, Christine E.
Rommens, Johanna M.
Cystic fibrosis gene modifier SLC26A9 modulates airway response to CFTR-directed therapeutics
title Cystic fibrosis gene modifier SLC26A9 modulates airway response to CFTR-directed therapeutics
title_full Cystic fibrosis gene modifier SLC26A9 modulates airway response to CFTR-directed therapeutics
title_fullStr Cystic fibrosis gene modifier SLC26A9 modulates airway response to CFTR-directed therapeutics
title_full_unstemmed Cystic fibrosis gene modifier SLC26A9 modulates airway response to CFTR-directed therapeutics
title_short Cystic fibrosis gene modifier SLC26A9 modulates airway response to CFTR-directed therapeutics
title_sort cystic fibrosis gene modifier slc26a9 modulates airway response to cftr-directed therapeutics
topic Association Studies Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5886039/
https://www.ncbi.nlm.nih.gov/pubmed/28171547
http://dx.doi.org/10.1093/hmg/ddw290
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