| Literature DB >> 28613820 |
William N Beavers1, Kristie L Rose1, James J Galligan1, Michelle M Mitchener1, Carol A Rouzer1, Keri A Tallman1, Connor R Lamberson1, Xiaojing Wang1, Salisha Hill1, Pavlina T Ivanova1, H Alex Brown1, Bing Zhang1, Ned A Porter1, Lawrence J Marnett1.
Abstract
Determining the impact of lipid electrophile-mediated protein damage that occurs during oxidative stress requires a comprehensive analysis of electrophile targets adducted under pathophysiological conditions. Incorporation of ω-alkynyl linoleic acid into the phospholipids of macrophages prior to activation by Kdo2-lipid A, followed by protein extraction, click chemistry, and streptavidin affinity capture, enabled a systems-level survey of proteins adducted by lipid electrophiles generated endogenously during the inflammatory response. Results revealed a dramatic enrichment for membrane and mitochondrial proteins as targets for adduction. A marked decrease in adduction in the presence of MitoTEMPO demonstrated a primary role for mitochondrial superoxide in electrophile generation and indicated an important role for mitochondria as both a source and target of lipid electrophiles, a finding that has not been revealed by prior studies using exogenously provided electrophiles.Entities:
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Year: 2017 PMID: 28613820 PMCID: PMC6174696 DOI: 10.1021/acschembio.7b00480
Source DB: PubMed Journal: ACS Chem Biol ISSN: 1554-8929 Impact factor: 5.100