Publication

Residual function of cystic fibrosis mutants predicts response to small molecule CFTR modulators.

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Persistent URL
Last modified
  • 05/15/2025
Type of Material
Authors
    Sangwoo T. Han, Johns Hopkins UniversityAndras Rab, Emory UniversityMatthew J. Pellicore, Johns Hopkins UniversityEmily F. Davis, Johns Hopkins UniversityAllison F. McCague, Johns Hopkins UniversityTaylor A. Evans, Johns Hopkins UniversityAnya T. Joynt, Johns Hopkins UniversityZhongzhou Lu, Johns Hopkins UniversityZhiwei Cai, University of BristolKaren S. Raraigh, Johns Hopkins UniversityJeong Hong, Emory UniversityDavid N. Sheppard, University of BristolEric J. Sorscher, Emory UniversityGarry R. Cutting, Johns Hopkins University
Language
  • English
Date
  • 2018-07-25
Publisher
  • American Society for Clinical Investigation
Publication Version
Copyright Statement
  • © 2018, American Society for Clinical Investigation
Final Published Version (URL)
Title of Journal or Parent Work
ISSN
  • 2379-3708
Volume
  • 3
Issue
  • 14
Start Page
  • e121159
End Page
  • e121159
Grant/Funding Information
  • This work was supported by the NIH (R01DK44003), CF Foundation (Cuttin13A1, Cuttin15XX0, and Cuttin16IO to GRC; SORSCH13XX0 and SORSCH14XX0 to EJS), and CFFT (SHEPPA14XX0) to DNS.
Supplemental Material (URL)
Abstract
  • Treatment of individuals with cystic fibrosis (CF) has been transformed by small molecule therapies that target select pathogenic variants in the CF transmembrane conductance regulator (CFTR). To expand treatment eligibility, we stably expressed 43 rare missense CFTR variants associated with moderate CF from a single site in the genome of human CF bronchial epithelial (CFBE41o-) cells. The magnitude of drug response was highly correlated with residual CFTR function for the potentiator ivacaftor, the corrector lumacaftor, and ivacaftor-lumacaftor combination therapy. Response of a second set of 16 variants expressed stably in Fischer rat thyroid (FRT) cells showed nearly identical correlations. Subsets of variants were identified that demonstrated statistically significantly higher responses to specific treatments. Furthermore, nearly all variants studied in CFBE cells (40 of 43) and FRT cells (13 of 16) demonstrated greater response to ivacaftor-lumacaftor combination therapy than either modulator alone. Together, these variants represent 87% of individuals in the CFTR2 database with at least 1 missense variant. Thus, our results indicate that most individuals with CF carrying missense variants are (a) likely to respond modestly to currently available modulator therapy, while a small fraction will have pronounced responses, and (b) likely to derive the greatest benefit from combination therapy.
Author Notes
  • Address correspondence to: Garry Cutting, The Johns Hopkins Medical Institutions, 733 North Broadway, BRB 559, Baltimore, Maryland 21205, USA. Phone: 410.614.0211; Email: gcutting@jhmi.edu
Keywords
Research Categories
  • Biology, Physiology
  • Health Sciences, Pharmacology

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