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Lipid bodies in oxidized LDL-induced foam cells are leukotriene-synthesizing organelles: a MCP-1/CCL2 regulated phenomenon
Authors:Adriana R. Silva,Patricia Pacheco,Adriana Vieira-de-Abreu,Clarissa M. Maya-Monteiro,Barbara D'Alegria,Kelly G. Magalhã  es,Edson F. de Assis,Christianne Bandeira-Melo,Hugo C. Castro-Faria-Neto,Patricia T. Bozza
Affiliation:1. Laboratório de Inflamação, Instituto Oswaldo Cruz, Fundação Oswaldo Cruz, Rio de Janeiro, RJ, Brazil;2. Laboratorio de Imunofarmacologia, Instituto Oswaldo Cruz, Fundação Oswaldo Cruz; Av. Brasil 4365, Manguinhos, 21045-900 Rio de Janeiro, RJ, Brazil;3. Laboratório de Inflamação, Instituto de Biofísica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil
Abstract:Lipid-laden foam macrophages are emerging as key players in early atherogenesis. Even though cytoplasmic lipid bodies (lipid droplets) are now recognized as organelles with cell functions beyond lipid storage, the mechanisms controlling lipid body biogenesis within macrophages and their additional functions in atherosclerosis are not completely elucidated. Here we studied oxLDL-elicited macrophage machinery involved in lipid body biogenesis as well as lipid body roles in leukotriene (LT) synthesis. Both in vivo and in vitro, oxLDL (but not native LDL) induced rapid assembly of cytoplasmic lipid bodies-bearing ADRP within mice macrophages. Such oxLDL-elicited foamy-like phenotype was a pertussis toxin-sensitive process that depended on a paracrine activity of endogenous MCP-1/CCL2 and activation of ERK. Pretreatment with neutralizing anti-MCP-1/CCL2 inhibited macrophage ADRP protein expression induced by oxLDL. By directly immuno-localizing leukotrienes at their sites of synthesis, we showed that oxLDL-induced newly formed lipid bodies function as active sites of LTB4 and LTC4 synthesis, since oxLDL-induced lipid bodies within foam macrophages compartmentalized the enzyme 5-lipoxygenase and five lipoxygenase-activating protein (FLAP) as well as newly formed LTB4 and LTC4. Consistent with MCP-1/CCL-2 role in ox-LDL-induced lipid body biogenesis, in CCR2 deficient mice both ox-LDL-induced lipid body assembly and LT release were reduced as compared to wild type mice. In conclusion, oxLDL-driven foam cells are enriched with leukotriene-synthesizing lipid bodies – specialized organelles whose biogenic process is mediated by MCP-1/CCL2-triggered CCR2 activation and ERK-dependent downstream signaling – that may amplify inflammatory mediator production in atherosclerosis.
Keywords:ADRP, adipose differentiation related protein   AA, arachidonic acid   CCR2, CC chemokine receptor 2   COXs, cyclooxygenases   cPLA2, cytosolic phospholipase A2   cysLTs, cysteinyl leukotrienes   ERK, extracellular signal-regulated kinase   FLAP, five lipoxygenase-activating protein   oxLDL, oxidized low density lipoprotein   LO, lipoxygenase   LTs, leukotrienes   LPS, lipopolysaccharide   IL, interleukin   i.p., intraperitoneal   MCP-1/CCL2, monocyte chemotactic protein-1/CC Ligand 2   MAP, mitogen-activated protein   PAF, platelet-activating factor   WT, wild type
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