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Developmental regulation of DUOX1 expression and function in human fetal lung epithelial cells
- Source :
- American Journal of Physiology-Lung Cellular and Molecular Physiology. 292:L1506-L1514
- Publication Year :
- 2007
- Publisher :
- American Physiological Society, 2007.
-
Abstract
- The purpose of this study was to determine the expression and cellular functions of the epithelial NADPH oxidase DUOX1 during alveolar type II cell development. When human fetal lung cells (gestational age 11–22 wk) were cultured to confluency on permeable filters, exposure of cells to a hormone mixture (dexamethasone, 8-Br-cAMP, and IBMX, together referred to as DCI) resulted in differentiation of cells into a mature type II phenotype as assessed by expression of lamellar bodies, surfactant proteins, and transepithelial electrical parameters. After 6 days in culture in presence of DCI, transepithelial resistance (2,616 ± 529 Ω·cm2) and potential (−8.5 ± 0.6 mV) indicated epithelial polarization. At the same time, treatment with DCI significantly increased the mRNA expression of DUOX1 (∼21-fold), its maturation factor DUOXA1 (∼12-fold), as well as DUOX protein (∼12-fold), which was localized near the apical cell pole in confluent cultures. For comparison, in fetal lung specimens, DUOX protein was not detectable at up to 27 wk of gestational age but was strongly upregulated after 32 wk. Function of DUOX1 was assessed by measuring H2O2 and acid production. Rates of H2O2 production were increased by DCI treatment and blocked by small interfering RNA directed against DUOX1 or by diphenylene iodonium. DCI-treated cultures also showed increased intracellular acid production and acid release into the mucosal medium, and acid production was largely blocked by knockdown of DUOX1 mRNA. These data establish the regulated expression of DUOX1 during alveolar maturation, and indicate DUOX1 in alveolar H2O2 and acid secretion by differentiated type II cells.
- Subjects :
- Pulmonary and Respiratory Medicine
medicine.medical_specialty
Small interfering RNA
Physiology
Intracellular pH
Respiratory Mucosa
Lamellar granule
Biology
Dexamethasone
Fetus
Physiology (medical)
Internal medicine
medicine
Humans
RNA, Messenger
Glucocorticoids
Cells, Cultured
Gene knockdown
Messenger RNA
Confluency
Flavoproteins
Gene Expression Regulation, Developmental
NADPH Oxidases
Cell Differentiation
Hydrogen Peroxide
Cell Biology
Dual Oxidases
Molecular biology
Up-Regulation
Pulmonary Alveoli
B vitamins
Phenotype
Endocrinology
Acids
Subjects
Details
- ISSN :
- 15221504 and 10400605
- Volume :
- 292
- Database :
- OpenAIRE
- Journal :
- American Journal of Physiology-Lung Cellular and Molecular Physiology
- Accession number :
- edsair.doi.dedup.....ae9c980ebe804b0617ca16e02e3e0954