Respiratory Epithelial Gene Expression in Patients with Mild and Severe Cystic Fibrosis Lung Disease
- 1 September 2006
- journal article
- Published by American Thoracic Society in American Journal of Respiratory Cell and Molecular Biology
- Vol. 35 (3) , 327-336
- https://doi.org/10.1165/rcmb.2005-0359oc
Abstract
Despite having identical cystic fibrosis transmembrane conductance regulator genotypes, individuals with DeltaF508 homozygous cystic fibrosis (CF) demonstrate significant variability in severity of pulmonary disease. This investigation used high-density oligonucleotide microarray analysis of nasal respiratory epithelium to investigate the molecular basis of phenotypic differences in CF by (1) identifying differences in gene expression between DeltaF508 homozygotes in the most severe 20th percentile of lung disease by forced expiratory volume in 1 s and those in the most mild 20th percentile of lung disease and (2) identifying differences in gene expression between DeltaF508 homozygotes and age-matched non-CF control subjects. Microarray results from 23 participants (12 CF, 11 non-CF) met the strict quality control guidelines and were used for final data analysis. A total of 652 of the 11,867 genes identified as present in 75% of the samples were significantly differentially expressed in one of the three disease phenotypes: 30 in non-CF, 53 in mild CF, and 569 in severe CF. An analysis of genes differentially expressed by severity of CF lung disease demonstrated significant upregulation in severe CF of genes involved in protein ubiquination (P < 0.04), mitochondrial oxidoreductase activity (P < 0.01), and lipid metabolism (P < 0.03). Analysis of genes with decreased expression in patients with CF compared with control subjects demonstrated significant downregulation of genes involved in airway defense (P < 0.047) and protein metabolism (P < 0.048). This study suggests that differences in CF lung phenotype are associated with differences in expression of genes involving airway defense, protein ubiquination, and mitochondrial oxidoreductase activity and identifies specific new candidate modifiers of the CF phenotype.Keywords
This publication has 50 references indexed in Scilit:
- Energy transduction by respiratory complex I – an evaluation of current knowledgeBiochemical Society Transactions, 2005
- Salivary Statherin Peptide-Binding Epitopes of Commensal and Potentially Infectious Actinomyces spp. Delineated by a Hybrid Peptide ConstructInfection and Immunity, 2004
- Stimulation of Signal Transducer and Activator of Transcription-1 (STAT1)-dependent Gene Transcription by Lipopolysaccharide and Interferon-γ Is Regulated by Mammalian Target of RapamycinJournal of Biological Chemistry, 2003
- Insights into the ubiquitin transfer cascade from the structure of the activating enzyme for NEDD8Nature, 2003
- Categories of ΔF508 homozygous cystic fibrosis twin and sibling pairs with distinct phenotypic characteristicsTwin Research, 2000
- Categories of ΔF508 homozygous cystic fibrosis twin and sibling pairs with distinct phenotypic characteristicsTwin Research, 2000
- Selective Up-Regulation of Chemokine IL-8 Expression in Cystic Fibrosis Bronchial Gland Cells in Vivo and in VitroThe American Journal of Pathology, 1998
- A Two-Component Model for Measurement Error in Analytical ChemistryTechnometrics, 1995
- Evidence for a mitochondrial lesion in cystic fibrosisLife Sciences, 1989
- Increased Bioelectric Potential Difference across Respiratory Epithelia in Cystic FibrosisNew England Journal of Medicine, 1981