Myeloperoxidase-mediated Methionine Oxidation Promotes an Amyloidogenic Outcome for Apolipoprotein A-I

J Biol Chem. 2015 Apr 24;290(17):10958-71. doi: 10.1074/jbc.M114.630442. Epub 2015 Mar 10.

Abstract

High plasma levels of apolipoprotein A-I (apoA-I) correlate with cardiovascular health, whereas dysfunctional apoA-I is a cause of atherosclerosis. In the atherosclerotic plaques, amyloid deposition increases with aging. Notably, apoA-I is the main component of these amyloids. Recent studies identified high levels of oxidized lipid-free apoA-I in atherosclerotic plaques. Likely, myeloperoxidase (MPO) secreted by activated macrophages in atherosclerotic lesions is the promoter of such apoA-I oxidation. We hypothesized that apoA-I oxidation by MPO levels similar to those present in the artery walls in atherosclerosis can promote apoA-I structural changes and amyloid fibril formation. ApoA-I was exposed to exhaustive chemical (H2O2) oxidation or physiological levels of enzymatic (MPO) oxidation and incubated at 37 °C and pH 6.0 to induce fibril formation. Both chemically and enzymatically oxidized apoA-I produced fibrillar amyloids after a few hours of incubation. The amyloid fibrils were composed of full-length apoA-I with differential oxidation of the three methionines. Met to Leu apoA-I variants were used to establish the predominant role of oxidation of Met-86 and Met-148 in the fibril formation process. Importantly, a small amount of preformed apoA-I fibrils was able to seed amyloid formation in oxidized apoA-I at pH 7.0. In contrast to hereditary amyloidosis, wherein specific mutations of apoA-I cause protein destabilization and amyloid deposition, oxidative conditions similar to those promoted by local inflammation in atherosclerosis are sufficient to transform full-length wild-type apoA-I into an amyloidogenic protein. Thus, MPO-mediated oxidation may be implicated in the mechanism that leads to amyloid deposition in the atherosclerotic plaques in vivo.

Keywords: 2D (Two-dimensional) Infrared Spectroscopy; Amyloid; Amyloidosis; Apolipoprotein; Apolipoprotein A-I; Atherosclerosis; Fibril; Myeloperoxidase; Oxidation.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Amyloid / genetics
  • Amyloid / metabolism*
  • Apolipoprotein A-I / genetics
  • Apolipoprotein A-I / metabolism*
  • Atherosclerosis / genetics
  • Atherosclerosis / metabolism*
  • Atherosclerosis / pathology
  • Humans
  • Hydrogen Peroxide / pharmacology
  • Hydrogen-Ion Concentration
  • Methionine / genetics
  • Methionine / metabolism
  • Oxidants / pharmacology
  • Oxidation-Reduction / drug effects
  • Peroxidase / genetics
  • Peroxidase / metabolism*
  • Plaque, Atherosclerotic / genetics
  • Plaque, Atherosclerotic / metabolism*
  • Plaque, Atherosclerotic / pathology

Substances

  • APOA1 protein, human
  • Amyloid
  • Apolipoprotein A-I
  • Oxidants
  • Methionine
  • Hydrogen Peroxide
  • Peroxidase