• Title of article

    Apolipoproteins A-IV and A-V are acute-phase proteins in mouse HDL

  • Author/Authors

    Weerapan Khovidhunkit، نويسنده , , Philippe N. Duchateau، نويسنده , , Katalin F. Medzihradszky، نويسنده , , Arthur H. Moser، نويسنده , , Josefina Naya-Vigne، نويسنده , , Judy K. Shigenaga، نويسنده , , John P. Kane، نويسنده , , Carl Grunfeld، نويسنده , , Kenneth R. Feingold، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    8
  • From page
    37
  • To page
    44
  • Abstract
    Background: Infection and inflammation are associated with atherosclerosis. During infection and inflammation, HDL decreases and there are changes in the levels of several HDL-associated proteins. To identify changes in the protein composition of HDL during infection and inflammation, a proteomic approach was utilized. Methods and results: Using two-dimensional gel electrophoresis and mass spectrometry, we found the expected increases in apolipoprotein (apo) SAA and apo E, as well as a decrease in apo A-I on HDL isolated from mice injected with endotoxin. We identified apo A-IV and apo A-V as positive acute-phase proteins in mouse HDL. We also found an increase in hepatic mRNA levels of apo A-IV and apo A-V after injection of endotoxin. Interleukin-6 increased apo A-IV and apo A-V mRNA levels in Hep3B cells. Additionally, we demonstrated that the protein levels of apo A-II in acute-phase HDL and the hepatic mRNA levels of apo A-II were decreased. Conclusions: Apo A-IV and A-V are positive acute-phase proteins that increase in the serum during inflammation while apo A-II is a negative acute-phase protein in mice. Similar to other positive and negative acute-phase proteins, changes in hepatic production account for the changes in serum levels. However, the changes in apo A-IV and apo A-V, two apolipoproteins whose activities are not fully understood, may serve functions other than regulating lipid metabolism during the acute-phase response (APR). Coupled with the other changes in HDL proteins that occur, these changes are likely to alter the functional properties of HDL perhaps increasing the risk of atherosclerosis.
  • Keywords
    acute-phase response , Acute-phase HDL , endotoxin , Lipopolysaccharide , proteomics
  • Journal title
    Atherosclerosis
  • Serial Year
    2004
  • Journal title
    Atherosclerosis
  • Record number

    631394