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Computers in Biology and Medicine|October 24, 1998
2 barrier-1 site pore: an interactive spreadsheet model for two permeating ionsM K Mansoura, D C DawsonPhysiological Reviews|January 29, 1999
CFTR: mechanism of anion conductionD C Dawson, S S Smith, M K MansouraProceedings of the National Academy of Sciences of the United States of America|November 1, 1993
Functional roles of the nucleotide-binding folds in the activation of the cystic fibrosis transmembrane conductance regulatorL S Smit, D J Wilkinson, M K Mansoura, et al.The Journal of General Physiology|January 1, 1996
CFTR: the nucleotide binding folds regulate the accessibility and stability of the activated stateD J Wilkinson, M K Mansoura, P Y Watson, et al.The American Journal of Physiology|July 1, 1997
CFTR activation: additive effects of stimulatory and inhibitory phosphorylation sites in the R domainD J Wilkinson, T V Strong, M K Mansoura, et al.Cancer|January 10, 2001
The Human Genome Project. Revealing the shared inheritance of all humankindF S Collins, M K MansouraBiophysical Journal|March 25, 1998
Cystic fibrosis transmembrane conductance regulator (CFTR) anion binding as a probe of the poreM K Mansoura, S S Smith, A D Choi, et al.Human Molecular Genetics|March 1, 1993
Expression of an abundant alternatively spliced form of the cystic fibrosis transmembrane conductance regulator (CFTR) gene is not associated with a cAMP-activated chloride conductanceT V Strong, D J Wilkinson, M K Mansoura, et al.Human Molecular Genetics|February 1, 1995
Missense mutation (G480C) in the CFTR gene associated with protein mislocalization but normal chloride channel activityL S Smit, T V Strong, D J Wilkinson, et al.Human Gene Therapy|May 1, 1999
Fluorescent chloride indicators to assess the efficacy of CFTR cDNA deliveryM K Mansoura, J Biwersi, M A Ashlock, et al.Pageof 6