Tuberc Respir Dis > Volume 53(1); 2002 > Article
Tuberculosis and Respiratory Diseases 2002;53(1):36-45.
DOI: https://doi.org/10.4046/trd.2002.53.1.36    Published online July 1, 2002.
Expression of Peroxiredoxin I and II in Neonatal and Adult Rat Lung Exposed to Hyperoxia.
Chang Youl Lee, Hyung Jung Kim, Chul Min Ahn, Sung Kyu Kim
Department of Internal Medicine, Yonsei University College of Medicine, Seoul. Korea. khj57@yumc.yonsei.ac.kr
Abstract
BACKGROUND
In mammals, the activity of antioxidant enzymes is increased in adult lung to adapt to hyperoxia. The increase of these activities is augmented in neonates and is known as an important mechanism of tolerance to high oxygen levels. Peroxiredoxin(Prx) is an abundant and ubiquitous intracellular antioxidant enzyme. Prx I and II are major cytosolic subtypes. The aim of this study was to examine the Prx I and II mRNA and protein expression levels in adult rat lungs and to compare then with those of neonatal rat lungs exposed to hyperoxia. METHODS: Adult Sprague-Dawley rats and neonates that were delivered from timed-pregnant Sprague-Dawley rat were randomly exposed to normoxia or hyperoxia. After exposure to high oxygen level for a set time, the bronchoalveolar lavage fluid and lung tissue were obtained. The Prx I and II protein expression levels were measured by western blot analysis using polyclonal rabbit anti-Prx I or anti-Prx II antibodies and the relative expression of the Prx I and Prx II per Actin protein were obtained as an internal standard. The Prx I and II mRNA expression levels were measured by northernblot analysis using Prx I and Prx II-specific cDNA prepared from pCRPrx I and pCRPrx II, and the relative Prx I and Prx II expression levels per Actin mRNA were obtained as an internal standard. RESULTS: Hyperoxia induced some peak increase in the Prx I mRNA levels after 24 hour in adult rats. Interestingly, hyperoxia induced a marked increase of Prx I mRNA at 24 hour in neonatal rats. However, hyperoxia did not induce an alteration in the expression of Prx II mRNA in both the adult and neonatal rat lungs. Hyperoxia did not induce an alteration in the expression of the Prx I and Prx II protein in both the adult and neonatal rat lungs. Hyperoxia did not induce an alteration in the amount of Prx I and Prx II protein all the times in the bronchoalveolar fluid of adult rats. CONCLUSION: Prx I and II is differently regulated by hyperoxia in adult and neonatal rat lung at the transcriptional level. The prominent upregulation of Prx I mRNA in neonates compared to those in adults by hyperoxia may be another mechanism of resistance to high oxygen levels in neonate.
Key Words: Antioxidant enzyme, Peroxiredoxin, Hyperoxia, Neonate


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