Differential trafficking of oxidized LDL and oxidized LDL immune complexes in macrophages: impact on oxidative stress.

Oxidized low-density lipoproteins (oxLDL) and oxLDL-containing immune complexes (oxLDL-IC) contribute to formation of lipid-laden macrophages (foam cells). It has been shown that oxLDL-IC are considerably more efficient than oxLDL in induction of foam cell formation, inflammatory cytokines secretion...

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Main Authors: Mohammed M Al Gadban, Kent J Smith, Farzan Soodavar, Christabelle Piansay, Charlyne Chassereau, Waleed O Twal, Richard L Klein, Gabriel Virella, Maria F Lopes-Virella, Samar M Hammad
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-09-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2932722?pdf=render
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spelling doaj-56c678247da14f1492e371f1856b17c02020-11-25T01:23:38ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-09-015910.1371/journal.pone.0012534Differential trafficking of oxidized LDL and oxidized LDL immune complexes in macrophages: impact on oxidative stress.Mohammed M Al GadbanKent J SmithFarzan SoodavarChristabelle PiansayCharlyne ChassereauWaleed O TwalRichard L KleinGabriel VirellaMaria F Lopes-VirellaSamar M HammadOxidized low-density lipoproteins (oxLDL) and oxLDL-containing immune complexes (oxLDL-IC) contribute to formation of lipid-laden macrophages (foam cells). It has been shown that oxLDL-IC are considerably more efficient than oxLDL in induction of foam cell formation, inflammatory cytokines secretion, and cell survival promotion. Whereas oxLDL is taken up by several scavenger receptors, oxLDL-IC are predominantly internalized through the FCgamma receptor I (FCgamma RI). This study examined differences in intracellular trafficking of lipid and apolipoprotein moieties of oxLDL and oxLDL-IC and the impact on oxidative stress.Fluorescently labeled lipid and protein moieties of oxLDL co-localized within endosomal and lysosomal compartments in U937 human monocytic cells. In contrast, the lipid moiety of oxLDL-IC was detected in the endosomal compartment, whereas its apolipoprotein moiety advanced to the lysosomal compartment. Cells treated with oxLDL-IC prior to oxLDL demonstrated co-localization of internalized lipid moieties from both oxLDL and oxLDL-IC in the endosomal compartment. This sequential treatment likely inhibited oxLDL lipid moieties from trafficking to the lysosomal compartment. In RAW 264.7 macrophages, oxLDL-IC but not oxLDL induced GFP-tagged heat shock protein 70 (HSP70) and HSP70B', which co-localized with the lipid moiety of oxLDL-IC in the endosomal compartment. This suggests that HSP70 family members might prevent the degradation of the internalized lipid moiety of oxLDL-IC by delaying its advancement to the lysosome. The data also showed that mitochondrial membrane potential was decreased and generation of reactive oxygen and nitrogen species was increased in U937 cell treated with oxLDL compared to oxLDL-IC.Findings suggest that lipid and apolipoprotein moieties of oxLDL-IC traffic to separate cellular compartments, and that HSP70/70B' might sequester the lipid moiety of oxLDL-IC in the endosomal compartment. This mechanism could ultimately influence macrophage function and survival. Furthermore, oxLDL-IC might regulate the intracellular trafficking of free oxLDL possibly through the induction of HSP70/70B'.http://europepmc.org/articles/PMC2932722?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Mohammed M Al Gadban
Kent J Smith
Farzan Soodavar
Christabelle Piansay
Charlyne Chassereau
Waleed O Twal
Richard L Klein
Gabriel Virella
Maria F Lopes-Virella
Samar M Hammad
spellingShingle Mohammed M Al Gadban
Kent J Smith
Farzan Soodavar
Christabelle Piansay
Charlyne Chassereau
Waleed O Twal
Richard L Klein
Gabriel Virella
Maria F Lopes-Virella
Samar M Hammad
Differential trafficking of oxidized LDL and oxidized LDL immune complexes in macrophages: impact on oxidative stress.
PLoS ONE
author_facet Mohammed M Al Gadban
Kent J Smith
Farzan Soodavar
Christabelle Piansay
Charlyne Chassereau
Waleed O Twal
Richard L Klein
Gabriel Virella
Maria F Lopes-Virella
Samar M Hammad
author_sort Mohammed M Al Gadban
title Differential trafficking of oxidized LDL and oxidized LDL immune complexes in macrophages: impact on oxidative stress.
title_short Differential trafficking of oxidized LDL and oxidized LDL immune complexes in macrophages: impact on oxidative stress.
title_full Differential trafficking of oxidized LDL and oxidized LDL immune complexes in macrophages: impact on oxidative stress.
title_fullStr Differential trafficking of oxidized LDL and oxidized LDL immune complexes in macrophages: impact on oxidative stress.
title_full_unstemmed Differential trafficking of oxidized LDL and oxidized LDL immune complexes in macrophages: impact on oxidative stress.
title_sort differential trafficking of oxidized ldl and oxidized ldl immune complexes in macrophages: impact on oxidative stress.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-09-01
description Oxidized low-density lipoproteins (oxLDL) and oxLDL-containing immune complexes (oxLDL-IC) contribute to formation of lipid-laden macrophages (foam cells). It has been shown that oxLDL-IC are considerably more efficient than oxLDL in induction of foam cell formation, inflammatory cytokines secretion, and cell survival promotion. Whereas oxLDL is taken up by several scavenger receptors, oxLDL-IC are predominantly internalized through the FCgamma receptor I (FCgamma RI). This study examined differences in intracellular trafficking of lipid and apolipoprotein moieties of oxLDL and oxLDL-IC and the impact on oxidative stress.Fluorescently labeled lipid and protein moieties of oxLDL co-localized within endosomal and lysosomal compartments in U937 human monocytic cells. In contrast, the lipid moiety of oxLDL-IC was detected in the endosomal compartment, whereas its apolipoprotein moiety advanced to the lysosomal compartment. Cells treated with oxLDL-IC prior to oxLDL demonstrated co-localization of internalized lipid moieties from both oxLDL and oxLDL-IC in the endosomal compartment. This sequential treatment likely inhibited oxLDL lipid moieties from trafficking to the lysosomal compartment. In RAW 264.7 macrophages, oxLDL-IC but not oxLDL induced GFP-tagged heat shock protein 70 (HSP70) and HSP70B', which co-localized with the lipid moiety of oxLDL-IC in the endosomal compartment. This suggests that HSP70 family members might prevent the degradation of the internalized lipid moiety of oxLDL-IC by delaying its advancement to the lysosome. The data also showed that mitochondrial membrane potential was decreased and generation of reactive oxygen and nitrogen species was increased in U937 cell treated with oxLDL compared to oxLDL-IC.Findings suggest that lipid and apolipoprotein moieties of oxLDL-IC traffic to separate cellular compartments, and that HSP70/70B' might sequester the lipid moiety of oxLDL-IC in the endosomal compartment. This mechanism could ultimately influence macrophage function and survival. Furthermore, oxLDL-IC might regulate the intracellular trafficking of free oxLDL possibly through the induction of HSP70/70B'.
url http://europepmc.org/articles/PMC2932722?pdf=render
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