Pathways for oxidative damage of DNA by phagocytes
Pathways for oxidative damage of DNA by phagocytes
批准号:
6321670
负责人:
JAY W HEINECKE
金额:
$30.8万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-07-01 至 2005-06-30
关键词:
DNA damage chemical carcinogenesis electrospray ionization mass spectrometry emphysema eosinophil eosinophilic granuloma gas chromatography mass spectrometry high performance liquid chromatography infection related neoplasm /cancer inflammation laboratory mouse lung lung neoplasms myeloperoxidase nitrogen nuclear magnetic resonance spectroscopy nucleobase oxidative stress phagocytes schistosomiasis smoking tobacco abuse
中文摘要
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英文摘要
DESCRIPTION (Provided by Applicant): Oxidants generated by activated white
blood cells are critical to host defenses against microorganisms. However,
reactive species damage proteins and lipids and therefore might also damage
host tissue. Moreover, they also oxidize nucleic acids and therefore could
compromise the integrity of the genome. Such damage might account for the
association between chronic inflammation and increased risk of cancer. The
molecular mechanisms for oxidative damage of DNA during inflammation remain
poorly understood, however. While addressing this issue, we identified three
phagocyte-dependent pathways that oxidatively damage DNA in vitro: i) the
myeloperoxidase pathway begins with activated neutrophils and monocytes, the
cellular hallmarks of inflammation, ii) The reactive nitrogen pathway involves
macrophages and/or endothelial cells, iii) The eosinophil peroxidase pathway
operates in eosinophils, which are of central importance in host responses to
parasitic infection.
The overall goal of this proposal is to test the hypothesis that oxidants are
generated by one or more of the above pathways during inflammation nitrate and
halogenate nucleobases, promoting mutagenesis and damaging cells. We will seek
evidence for the operation of the pathways through complementary studies of
human and mouse tissue. Our specific aims are: First, to determine whether
tissue isolated from the lungs of smokers contains nucleobase oxidation
products specific for the myeloperoxidase pathway, eosinophil peroxidase
pathway, or reactive nitrogen pathway. Second, to use mouse models of chronic
inflammation to investigate the roles of the myeloperoxidase pathway, reactive
nitrogen pathway, and eosinophil peroxidase pathway in nucleobase oxidation in
vivo. Third, to identify additional oxidized nucleobases generated by
myeloperoxidase, reactive nitrogen species, or eosinophil peroxidase in vitro.
These studies should provide insights into the molecular mechanisms of
oxidative damage to DNA during inflammation.
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海外基金