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Accumulation of p21(Cip1/WAF1) during hyperoxic lung injury in mice
M A O'Reilly1, R J Staversky, R H Watkins
1Department of Pediatrics (Neonatology), School of Medicine and Dentistry, University of Rochester, Rochester, New York. oreillym@envmed.rochester.edu
Abstract:
Hyperoxic lung injury results in decreased cell proliferation, DNA damage, and cell death. Because the cyclin-dependent kinase inhibitor p21(Cip1/WAF1) (p21) inhibits cell proliferation in G1/S, enhances DNA repair, and regulates apoptosis in some cells, we hypothesized that the expression of p21 would increase in lungs of C57Bl/6J male mice exposed to and recovered from > 95% oxygen. A low level of p21 messenger RNA (mRNA) expression was detected by Northern blot analysis of room air-exposed lungs. Exposure to hyperoxia resulted in a modest increase in p21 mRNA expression by 24 h, followed by a marked induction by 48 to 72 h. In situ hybridization revealed that p21 mRNA abundance increased in bronchiolar epithelium and in resident alveolar cells, but not in smooth-muscle cells or large airway epithelium. Hyperoxia increased the expression of p21 protein by 24 h and continued to increase at 48 and 72 h. Immunohistochemical staining showed that p21 protein accumulated in the bronchiolar epithelium and in alveolar regions that had increased p21 mRNA expression. In contrast, the expression of the cyclin-dependent kinase inhibitor p27(Kip1) was not altered by hyperoxia. To determine whether p21 expression was altered during the repair process, mice were exposed to hyperoxia for 64 h and allowed to recover for up to 4 d in room air. The abundance of p21 mRNA and protein decreased by 1 to 2 d of recovery and returned to room air-exposed levels by 3 to 4 d of recovery. These findings support the concept that bronchiolar epithelial and alveolar cells damaged by hyperoxia express molecules such as p21, which may participate in regulating cell proliferation, DNA repair, and cell death.
Insights
Exposure to high oxygen levels increases p21 expression in lung cells, aiding DNA repair and regulating cell death. This suggests p21 plays a key role in lung injury recovery.
Area of Science:
- Pulmonary Medicine
- Cell Biology
- Molecular Biology
Background:
- Hyperoxic lung injury impairs cell proliferation, causes DNA damage, and induces cell death.
- The cyclin-dependent kinase inhibitor p21 (p21) is known to inhibit cell proliferation, enhance DNA repair, and regulate apoptosis.
Purpose of the Study:
- To investigate the expression of p21 in mouse lungs during hyperoxic exposure and recovery.
- To determine the role of p21 in cellular responses to hyperoxic lung injury.
Main Methods:
- C57Bl/6J male mice were exposed to hyperoxia (>95% oxygen) and allowed to recover.
- Northern blot analysis and in situ hybridization were used to measure p21 mRNA levels.
- Immunohistochemical staining and Western blot were used to assess p21 protein expression.
Main Results:
- Hyperoxia significantly increased p21 mRNA and protein expression in bronchiolar epithelium and alveolar cells.
- p21 expression peaked between 48-72 hours of hyperoxic exposure.
- During recovery, p21 levels decreased, returning to baseline by 3-4 days.
- The expression of p27(Kip1) remained unchanged.
Conclusions:
- Hyperoxia induces p21 expression in lung cells, suggesting its involvement in regulating cell proliferation, DNA repair, and apoptosis following injury.
- p21 may be a critical mediator in the cellular response and repair mechanisms in hyperoxic lung injury.