Abstract

Isoprostanes are prostaglandin-like compounds produced by non-enzymatic peroxidation of arachidonic acid. The cyclooxygenase-derived endoperoxide, prostaglandin H2, can undergo rearrangement to highly reactive gamma-ketoaldehyde secoprostanoids (levuglandin E2 and D2). We explored whether isoprostane endoperoxide intermediates also rearrange to levuglandin-like compounds (isolevuglandins). Formation of a series of isolevuglandins during oxidation of arachidonic acid in vitro was established utilizing a number of mass spectrometric analyses. However, these compounds could not be detected in free form in protein-containing biological systems, which we hypothesized was due to extremely rapid adduction to amines. This was supported by the finding that >60% of levuglandin E2 adducted to albumin within 20 s, whereas approximately 50% of 4-hydroxynonenal still remained unadducted after 1 h. By utilizing electrospray tandem mass spectrometry, we established that these compounds form oxidized pyrrole adducts (lactams and hydroxylactams) with lysine. Formation of isolevuglandin-lysine adducts on apolipoprotein B was readily detected during oxidation of low density lipoprotein following enzymatic digestion of the protein to single amino acids. These studies identify a novel series of extremely reactive products of the isoprostane pathway that rapidly form covalent adducts with lysine residues on proteins. This provides the basis to explore the formation of isolevuglandins in vivo to investigate the potential biological ramifications of their formation in settings of oxidant injury.

Highlights

  • A role for free radicals has been implicated in the pathogenesis of a wide variety of human diseases including atherosclerosis, cancer, and neurodegenerative diseases [1]

  • We reported the formation of prostaglandin (PG)like compounds in vivo, termed isoprostanes (IsoPs), by free radical-induced peroxidation of arachidonic acid [4]

  • Identification of IsoLGs Formed during Oxidation of Arachidonic Acid in Vitro—gas chromatography (GC)/negative ion chemical ionization (NICI)/mass spectrometry (MS) analysis of oxidized arachidonate mixtures revealed a series of compounds with characteristics of IsoLGs (Fig. 2)

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Summary

The abbreviations used are

4-HNE, 4-hydroxynonenal; MDA, malondialdehyde; LDL, low density lipoprotein; apoB-100, apolipoprotein B; PG, prostaglandin; IsoPs, isoprostanes; LG, levuglandin; IsoLGs, isolevuglandins; GC, gas chromatography; MS, mass spectrometry; and malondialdehyde (MDA) These reactive aldehydes are considered important mediators of oxidant injury due to their ability to covalently modify proteins and DNA, which can disrupt important cellular functions and can cause mutations [2]. Based on the observation that the IsoP endoperoxides undergo rearrangement in vivo, we explored whether such rearrangement results in the formation of levuglandin-like compounds, for which we propose the term isolevuglandins (IsoLGs). Our interest in this possibility stems from the fact that the ␥-ketoaldehyde moiety confers remarkable reactivity to these compounds.

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