Literature DB >> 19353781

Detection and quantification of protein adduction by electrophilic fatty acids: mitochondrial generation of fatty acid nitroalkene derivatives.

F J Schopfer1, C Batthyany, P R S Baker, G Bonacci, M P Cole, V Rudolph, A L Groeger, T K Rudolph, S Nadtochiy, P S Brookes, B A Freeman.   

Abstract

Nitroalkene fatty acid derivatives manifest a strong electrophilic nature, are clinically detectable, and induce multiple transcriptionally regulated anti-inflammatory responses. At present, the characterization and quantification of endogenous electrophilic lipids are compromised by their Michael addition with protein and small-molecule nucleophilic targets. Herein, we report a trans-nitroalkylation reaction of nitro-fatty acids with beta-mercaptoethanol (BME) and apply this reaction to the unbiased identification and quantification of reaction with nucleophilic targets. Trans-nitroalkylation yields are maximal at pH 7 to 8 and occur with physiological concentrations of target nucleophiles. This reaction is also amenable to sensitive mass spectrometry-based quantification of electrophilic fatty acid-protein adducts upon electrophoretic resolution of proteins. In-gel trans-nitroalkylation reactions also permit the identification of protein targets without the bias and lack of sensitivity of current proteomic approaches. Using this approach, it was observed that fatty acid nitroalkenes are rapidly metabolized in vivo by a nitroalkene reductase activity and mitochondrial beta-oxidation, yielding a variety of electrophilic and nonelectrophilic products that could be structurally characterized upon BME-based trans-nitroalkylation reaction. This strategy was applied to the detection and quantification of fatty acid nitration in mitochondria in response to oxidative inflammatory conditions induced by myocardial ischemia-reoxygenation.

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Year:  2009        PMID: 19353781      PMCID: PMC3144282          DOI: 10.1016/j.freeradbiomed.2008.12.025

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  44 in total

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4.  15-deoxy-delta 12,14-prostaglandin J2 inhibits multiple steps in the NF-kappa B signaling pathway.

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6.  Biosynthesis of 15-deoxy-delta12,14-PGJ2 and the ligation of PPARgamma.

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5.  Nitric oxide release from nitro-fatty acids in Arabidopsis roots.

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7.  Generation and esterification of electrophilic fatty acid nitroalkenes in triacylglycerides.

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Review 8.  Physiological consequences of complex II inhibition for aging, disease, and the mKATP channel.

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9.  The Chemical Basis of Thiol Addition to Nitro-conjugated Linoleic Acid, a Protective Cell-signaling Lipid.

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10.  Nitrated oleic acid up-regulates PPARgamma and attenuates experimental inflammatory bowel disease.

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