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Structure of nucleotide-binding domain 1 of the cystic fibrosis transmembrane conductance regulator

Authors :
Kanagalaghatta R. Rajashankar
K. Conners
S. Emtage
Sean Buchanan
William B. Guggino
Philip Thomas
Patrick H. Thibodeau
John F. Hunt
Wayne A. Hendrickson
Xun Zhao
Don Lorimer
Hal A. Lewis
Michael R. Dorwart
Margaret C. Kearins
Marie Zhang
Kai W. Post
Fowler Richard
Xia Gao
J. Michael Sauder
Peter C. Maloney
Stephen K. Burley
Mark Dickey
Marc E. Rutter
Stephanie Shriver
Source :
The EMBO journal. 23(2)
Publication Year :
2003

Abstract

Cystic fibrosis transmembrane conductance regulator (CFTR) is an ATP-binding cassette (ABC) transporter that functions as a chloride channel. Nucleotide-binding domain 1 (NBD1), one of two ABC domains in CFTR, also contains sites for the predominant CF-causing mutation and, potentially, for regulatory phosphorylation. We have determined crystal structures for mouse NBD1 in unliganded, ADP- and ATP-bound states, with and without phosphorylation. This NBD1 differs from typical ABC domains in having added regulatory segments, a foreshortened subdomain interconnection, and an unusual nucleotide conformation. Moreover, isolated NBD1 has undetectable ATPase activity and its structure is essentially the same independent of ligand state. Phe508, which is commonly deleted in CF, is exposed at a putative NBD1-transmembrane interface. Our results are consistent with a CFTR mechanism, whereby channel gating occurs through ATP binding in an NBD1–NBD2 nucleotide sandwich that forms upon displacement of NBD1 regulatory segments.

Details

ISSN :
02614189
Volume :
23
Issue :
2
Database :
OpenAIRE
Journal :
The EMBO journal
Accession number :
edsair.doi.dedup.....0d09cf1d3e4a92a2ff269f33745bd462