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Author Notes:

*E-mail: mjbrady@bu.edu

JCJ and EG contributed equally to this work.

Conceived and designed the experiments: JCJ MJB.

Performed the experiments: JCJ EG LASB MJB.

Analyzed the data: JCJ EG LASB AS MJB.

Contributed reagents/materials/analysis tools: KHK LASB.

Wrote the paper: MJB.

The authors thank several colleagues at The Pulmonary Center of Boston University School of Medicine for their assistance with this work: Jining Lü and Leah Cushing for performing the immunohistochemistry for smooth muscle actin, Jerome S. Brody for critical reading of the manuscript and Anne Hinds, FengZhi Shao, Junling Yang and Yue Liu for technical assistance.

Parts of these data were used to fulfill the doctoral dissertation of Elizabeth George.

Competing Interests: The authors have declared that no competing interests exist.

Subjects:

Research Funding:

The work was funded by National Institutes of Health PO1-HL47049 (MJB).

Dr. Lou Ann Brown acknowledges her grant 5RO1 AA012197 from the National Institutes of Health (USA).

Keywords:

  • Science & Technology
  • Multidisciplinary Sciences
  • Science & Technology - Other Topics
  • MULTIDISCIPLINARY SCIENCES
  • KRUPPEL-LIKE FACTOR
  • GAMMA-GLUTAMYL-TRANSFERASE
  • NF-KAPPA-B
  • RAT LUNG
  • GENE-EXPRESSION
  • EPITHELIAL-CELLS
  • MICROARRAY EXPERIMENTS
  • EXTRACELLULAR-MATRIX
  • ALVEOLAR EPITHELIUM
  • ANTIOXIDANT ENZYMES

Transcription Factor Klf4, Induced in the Lung by Oxygen at Birth, Regulates Perinatal Fibroblast and Myofibroblast Differentiation

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Journal Title:

PLoS ONE

Volume:

Volume 8, Number 1

Publisher:

, Pages e54806-e54806

Type of Work:

Article | Final Publisher PDF

Abstract:

The fluid-filled lung exists in relative hypoxia in utero (~25 mm Hg), but at birth fills with ambient air where the partial pressure of oxygen is ~150 mm Hg. The impact of this change was studied in mouse lung with microarrays to analyze gene expression one day before, and 2, 6, 12 and 24 hours after birth into room air or 10% O2. The expression levels of >150 genes, representing transcriptional regulation, structure, apoptosis and antioxidants were altered 2 hrs after birth in room air but blunted or absent with birth in 10% O2. Kruppel-like factor 4 (Klf4), a regulator of cell growth arrest and differentiation, was the most significantly altered lung gene at birth. Its protein product was expressed in fibroblasts and airway epithelial cells. Klf4 mRNA was induced in lung fibroblasts exposed to hyperoxia and constitutive expression of Klf4 mRNA in Klf4-null fibroblasts induced mRNAs for p21cip1/Waf1, smooth muscle actin, type 1 collagen, fibronectin and tenascin C. In Klf4 perinatal null lung, p21cip1/Waf1mRNA expression was deficient prior to birth and associated with ongoing cell proliferation after birth; connective tissue gene expression was deficient around birth and smooth muscle actin protein expression was absent from myofibroblasts at tips of developing alveoli; p53, p21cip1/Waf1 and caspase-3 protein expression were widespread at birth suggesting excess apoptosis compared to normal lung. We propose that the changing oxygen environment at birth acts as a physiologic signal to induce lung Klf4 mRNA expression, which then regulates proliferation and apoptosis in fibroblasts and airway epithelial cells, and connective tissue gene expression and myofibroblast differentiation at the tips of developing alveoli.

Copyright information:

© 2013 Jean et al.

This is an Open Access work distributed under the terms of the Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/).
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