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Myeloperoxidase Targets Apolipoprotein A-I, The Major Hdl Protein, For Site-Specific Oxidation In Human Atherosclerotic Lesions.

J Biol Chem.. 2012-02;  287(9):6375-86
Shao B, Pennathur S, Heinecke JW. Department of Medicine and Diabetes and Obesity Center of Excellence, University of Washington, Seattle, Washington 98195, USA.
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Abstract

Oxidative damage by myeloperoxidase (MPO) has been proposed to deprive HDL of its cardioprotective effects. In vitro studies reveal that MPO chlorinates and nitrates specific tyrosine residues of apoA-I, the major HDL protein. After Tyr-192 is chlorinated, apoA-I is less able to promote cholesterol efflux by the ABCA1 pathway. To investigate the potential role of this pathway in vivo, we used tandem mass spectrometry with selected reaction monitoring to quantify the regiospecific oxidation of apoA-I. This approach demonstrated that Tyr-192 is the major chlorination site in apoA-I in both plasma and lesion HDL of humans. We also found that Tyr-192 is the major nitration site in apoA-I of circulating HDL but that... More

Keywords

Apolipoproteins;Cardiovascular Disease;High Density Lipoprotein (HDL);Mass Spectrometry (MS);Post-translational Modification;Protein Chemical Modification;3-Chlorotyrosine;Hypochlorous Acid;Myeloperoxidase;Selected Reaction Monitoring