New Model of Cystic Fibrosis Transmembrane Conductance Regulator Proposes Active Channel-like Conformation
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Publication date
2012ISSN
1549-9596
Abstract
The cystic fibrosis transmembrane conductance regulator (CFTR) is an
unusual ABC transporter, functioning as a chloride channel critical for fluid
homeostasis in multiple organs. Disruption of CFTR function is associated with
cystic fibrosis making it an attractive therapeutic target. In addition, CFTR blockers are
being developed as potential antidiarrheals. CFTR drug discovery is hampered by the
lack of high resolution structural data, and considerable efforts have been invested in
modeling the channel structure. Although previously published CFTR models that
have been made publicly available mostly agree with experimental data relating to the
overall structure, they present the channel in an outward-facing conformation that
does not agree with expected properties of a “channel-like” structure. Here, we make
available a model of CFTR in such a “channel-like” conformation, derived by a unique
modeling approach combining restrained homology modeling and ROSETTA
refinement. In contrast to others, the present model is in agreement with expected channel properties such as pore shape,
dimensions, solvent accessibility, and experimentally derived distances. We have used the model to explore the interaction of
open channel blockers within the pore, revealing a common binding mode and ionic interaction with K95, in agreement with
experimental data. The binding-site was further validated using a virtual screening enrichment experiment, suggesting the model
might be suitable for drug discovery. In addition, we subjected the model to a molecular dynamics simulation, revealing
previously unaddressed salt-bridge interactions that may be important for structure stability and pore-lining residues that may
take part in Cl− conductance.
Document Type
Article
Language
English
Keywords
Fibrosi quística
Pages
12 p.
Publisher
American Chemical Society
Citation
DALTON, James i altres . "New Model of Cystic Fibrosis Transmembrane Conductance Regulator Proposes Active Channel-like Conformation". A: Journal of Chemical Information and Modeling, 2012, vol. 52, núm. 7, pàg. 1842-1853.
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(c) American Chemical Society, 2012
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