Current evidence suggests that acute lung injury is secondary to an imbalance between reactive oxygen and nitrogen species and antioxidant defense mechanisms. Traditionally, studies aimed at augmenting the latter have focused on primary antioxidants. More recently, such therapeutic strategies have expanded to include manipulation of stress genes. Constitutive expression of these molecules is low, but is readily induced in response to a variety of stimuli, resulting in resistance to a broad spectrum of etiologies of cellular injury and organ dysfunction. In the previous funding period, we showed that one such gene, metallothionein (MT), protects cultured mammalian cells against the cytotoxic and DNA-damaging effects of reactive nitrogen and oxygen species. In the current proposal, we will investigate the functional role of MT as a component of pulmonary endothelial cell defense, in vivo, and determine the mechanism by which MT performs these functions in cultured murine lung endothelial cells (MLEC).
Specific Aims are to determine: I. the functional role of MT in lungs of mice exposed to 100% oxygen. We will contrast the sensitivity to hyperoxic lung injury of wildtype mice to: a) MT homozygous null mutants; b) mice after liposome-mediated somatic gene transfer of plasmid containing human MT-IIA cDNA (driven by murine CMV) to the pulmonary microcirculation; and c) transgenic mice that express MT in their vascular endothelium under the control of human von Willebrand factor promoter. II. the role of NO in hyperoxic lung injury by contrasting the pulmonary response to hyperoxia in inducible nitric oxide synthase (NOS-II) knockout mice or in mice that overexpress NOS-II in their pulmonary microcirculation after liposome-mediated gene transfer. III. the biochemical mechanisms by which MT reduces the toxicity of reactive oxygen and nitrogen species in cultured mouse lung endothelial cells.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL032154-18
Application #
6330016
Study Section
Lung Biology and Pathology Study Section (LBPA)
Program Officer
Harabin, Andrea L
Project Start
1987-09-01
Project End
2002-11-30
Budget Start
2000-12-01
Budget End
2001-11-30
Support Year
18
Fiscal Year
2001
Total Cost
$289,261
Indirect Cost
Name
University of Pittsburgh
Department
Pharmacology
Type
Schools of Medicine
DUNS #
053785812
City
Pittsburgh
State
PA
Country
United States
Zip Code
15213
Stitt, Molly S; Wasserloos, K J; Tang, X et al. (2006) Nitric oxide-induced nuclear translocation of the metal responsive transcription factor, MTF-1 is mediated by zinc release from metallothionein. Vascul Pharmacol 44:149-55
Wilson, Annette; He, Fengtian; Li, Jiang et al. (2005) Targeted delivery of therapeutic oligonucleotides to pulmonary circulation. Adv Genet 54:21-41
Wilson, Annette; Zhou, Wen; Champion, Hunter C et al. (2005) Targeted delivery of oligodeoxynucleotides to mouse lung endothelial cells in vitro and in vivo. Mol Ther 12:510-8
Li, Jiang; Ma, Zheng; Tang, Zhi-Lue et al. (2004) CpG DNA-mediated immune response in pulmonary endothelial cells. Am J Physiol Lung Cell Mol Physiol 287:L552-8
Ma, Zheng; Li, Jiang; Yang, Lijuan et al. (2004) Inhibition of LPS- and CpG DNA-induced TNF-alpha response by oxidized phospholipids. Am J Physiol Lung Cell Mol Physiol 286:L808-16
St Croix, Claudette M; Stitt, Molly S; Leelavanichkul, Karanee et al. (2004) Nitric oxide-induced modification of protein thiolate clusters as determined by spectral fluorescence resonance energy transfer in live endothelial cells. Free Radic Biol Med 37:785-92
Collins, Joy L; Vodovotz, Yoram; Hierholzer, Christian et al. (2003) Characterization of the expression of inducible nitric oxide synthase in rat and human liver during hemorrhagic shock. Shock 19:117-22
Zhang, J; Wilson, A; Alber, S et al. (2003) Prolonged gene expression in mouse lung endothelial cells following transfection with Epstein-Barr virus-based episomal plasmid. Gene Ther 10:822-6
Tang, Zi-Lue; Wasserloos, Karla J; Liu, Xianghong et al. (2002) Nitric oxide decreases the sensitivity of pulmonary endothelial cells to LPS-induced apoptosis in a zinc-dependent fashion. Mol Cell Biochem 234-235:211-7
Wilson, Annette; Pitt, Bruce; Li, Song (2002) Complex roles of CpG in liposomal delivery of DNA and oligonucleotides. Biosci Rep 22:309-22

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