Skip to navigation Skip to content
  • Woodruff
  • Business
  • Health Sciences
  • Law
  • MARBL
  • Oxford College
  • Theology
  • Schools
    • Undergraduate

      • Emory College
      • Oxford College
      • Business School
      • School of Nursing

      Community

      • Emory College
      • Oxford College
      • Business School
      • School of Nursing
    • Graduate

      • Business School
      • Graduate School
      • School of Law
      • School of Medicine
      • School of Nursing
      • School of Public Health
      • School of Theology
  • Libraries
    • Libraries

      • Robert W. Woodruff
      • Business
      • Chemistry
      • Health Sciences
      • Law
      • MARBL
      • Music & Media
      • Oxford College
      • Theology
    • Library Tools

      • Course Reserves
      • Databases
      • Digital Scholarship (ECDS)
      • discoverE
      • eJournals
      • Electronic Dissertations
      • EmoryFindingAids
      • EUCLID
      • ILLiad
      • OpenEmory
      • Research Guides
  • Resources
    • Resources

      • Administrative Offices
      • Emory Healthcare
      • Academic Calendars
      • Bookstore
      • Campus Maps
      • Shuttles and Parking
      • Athletics: Emory Eagles
      • Arts at Emory
      • Michael C. Carlos Museum
      • Emory News Center
      • Emory Report
    • Resources

      • Emergency Contacts
      • Information Technology (IT)
      • Outlook Web Access
      • Office 365
      • Blackboard
      • OPUS
      • PeopleSoft Financials: Compass
      • Careers
      • Human Resources
      • Emory Alumni Association
  • Browse
    • Works by Author
    • Works by Journal
    • Works by Subject
    • Works by Dept
    • Faculty by Dept
  • For Authors
    • How to Submit
    • Deposit Advice
    • Author Rights
    • Publishing Your Data
    • FAQ
    • Emory Open Access Policy
    • Open Access Fund
  • About OpenEmory
    • About OpenEmory
    • About Us
    • Citing Articles
    • Contact Us
    • Privacy Policy
    • Terms of Use
 
Contact Us

Filter Results:

Year

  • 2016 (1)

Author

  • Avramescu, Radu G. (1)
  • Balch, William E. (1)
  • Brodsky, Jeffrey L. (1)
  • Cai, Zhiwei (1)
  • Chiang, Annette N. (1)
  • Cutting, Garry R. (1)
  • Cyr, Douglas M. (1)
  • Frizzell, Raymond A. (1)
  • Guggino, William B. (1)
  • Hong, Jeong S. (1)
  • Houck, Scott A. (1)
  • Lukacs, Gergely L. (1)
  • Peters, Kathryn W. (1)
  • Pollard, Harvey B. (1)
  • Sheppard, David N. (1)
  • Skach, William R. (1)
  • Sorscher, Eric (1)
  • Veit, Gudio (1)

Subject

  • Biology, Cell (1)
  • Health Sciences, Pharmacology (1)

Journal

  • Molecular Biology of the Cell (1)

Keyword

  • bind (1)
  • biolog (1)
  • biomedicin (1)
  • cell (1)
  • channel (1)
  • conform (1)
  • control (1)
  • controlledtri (1)
  • domain (1)
  • endoplasm (1)
  • endoplasmicreticulum (1)
  • function (1)
  • life (1)
  • matur (1)
  • membran (1)
  • messeng (1)
  • messengerrna (1)
  • mutat (1)
  • nonsens (1)
  • nucleotid (1)
  • plasma (1)
  • plasmamembran (1)
  • random (1)
  • regul (1)
  • reticulum (1)
  • rna (1)
  • scienc (1)
  • socioeconom (1)
  • socioeconomicstatus (1)
  • status (1)
  • technolog (1)
  • transmembran (1)
  • trial (1)

Author department

  • Peds: Cystic Fibrosis (1)

Search Results for all work with filters:

  • Biology, Physiology
  • conduct
  • nucleotidebind

Work 1 of 1

Sorted by relevance

Article

From CFTR biology toward combinatorial pharmacotherapy: expanded classification of cystic fibrosis mutations

by Gudio Veit; Radu G. Avramescu; Annette N. Chiang; Scott A. Houck; Zhiwei Cai; Kathryn W. Peters; Jeong S. Hong; Harvey B. Pollard; William B. Guggino; William E. Balch; William R. Skach; Garry R. Cutting; Raymond A. Frizzell; David N. Sheppard; Douglas M. Cyr; Eric Sorscher; Jeffrey L. Brodsky; Gergely L. Lukacs

2016

Subjects
  • Biology, Cell
  • Biology, Physiology
  • Health Sciences, Pharmacology
  • File Download
  • View Abstract

Abstract:Close

More than 2000 mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) have been described that confer a range of molecular cell biological and functional phenotypes. Most of these mutations lead to compromised anion conductance at the apical plasma membrane of secretory epithelia and cause cystic fibrosis (CF) with variable disease severity. Based on the molecular phenotypic complexity of CFTR mutants and their susceptibility to pharmacotherapy, it has been recognized that mutations may impose combinatorial defects in CFTR channel biology. This notion led to the conclusion that the combination of pharmacotherapies addressing single defects (e.g., transcription, translation, folding, and/or gating) may show improved clinical benefit over available low-efficacy monotherapies. Indeed, recent phase 3 clinical trials combining ivacaftor (a gating potentiator) and lumacaftor (a folding corrector) have proven efficacious in CF patients harboring the most common mutation (deletion of residue F508, δF508, or Phe508del). This drug combination was recently approved by the U.S. Food and Drug Administration for patients homozygous for δF508. Emerging studies of the structural, cell biological, and functional defects caused by rare mutations provide a new framework that reveals a mixture of deficiencies in different CFTR alleles. Establishment of a set of combinatorial categories of the previously defined basic defects in CF alleles will aid the design of even more efficacious therapeutic interventions for CF patients.
Site Statistics
  • 16,862
  • Total Works
  • 3,646,231
  • Downloads
  • 1,122,142
  • Downloads This Year
  • 6,807
  • Faculty Profiles

Copyright © 2016 Emory University - All Rights Reserved
540 Asbury Circle, Atlanta, GA 30322-2870
(404) 727-6861
Privacy Policy | Terms & Conditions

v2.2.8-dev

Contact Us Recent and Popular Items
Download now