Malondialdehyde modification of lipoprotein(a) produces avid uptake by human monocyte-macrophages
Increased plasma levels of the apoB-100-containing lipoprotein(a) (Lp(a)) are associated with an increased risk for atherosclerosis and myocardial infarction, but the mechanisms by which lipoprotein(a) may accelerate these processes remain obscure. In this study we have investigated the impact of th...
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Veröffentlicht in: | The Journal of biological chemistry 1992-02, Vol.267 (6), p.4143-4151 |
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Sprache: | eng |
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Zusammenfassung: | Increased plasma levels of the apoB-100-containing lipoprotein(a) (Lp(a)) are associated with an increased risk for atherosclerosis
and myocardial infarction, but the mechanisms by which lipoprotein(a) may accelerate these processes remain obscure. In this
study we have investigated the impact of the association of apoprotein(a) with the low density lipoprotein (LDL)-like Lp(a)
particle upon specificity of receptor recognition after lipoprotein modification by malondialdehyde or transition metal-induced
oxidation. We have determined that radioiodination labels both apoprotein components of Lp(a), that malondialdehyde modification
produces an anionic lipoprotein comparable to native Lp(a) in Stokes' radius, and that N,N'-disubstituted 1-amino-3-iminopropene
derivatives preferentially cross-link apoprotein(a) to apoB-100 protein. Like LDL, native Lp(a) is recognized in human monocyte-macrophages
by the LDL receptor. Like LDL, progressive modification of Lp(a) by malondialdehyde abolishes lipoprotein recognition by the
LDL receptor and produces uptake and hydrolysis by the scavenger receptor of human monocyte-macrophages. We propose that intimal
retention of Lp(a) by extracellular components of the atherosclerotic reaction places the lipoprotein in a microenvironment
favoring subsequent peroxidative modification. The chronic production of lipid peroxide-modified Lp(a) together with unmitigated
cellular clearance by scavenger receptors may contribute to the accumulation of lipoprotein-derived lipid in macrophage-derived
foam cells of the atherosclerotic reaction. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1016/s0021-9258(19)50640-8 |