Mycobacterium bovis Bacillus Calmette-Guerin Infection Induces TLR2-Dependent Peroxisome Proliferator-Activated Receptor γ Expression and Activation: Functions in Inflammation, Lipid Metabolism, and Pathogenesis

被引:137
作者
Almeida, Patricia E. [1 ]
Silva, Adriana R. [2 ]
Maya-Monteiro, Clarissa M. [1 ]
Torocsik, Daniel [3 ]
D'Avila, Heloisa [1 ]
Dezsoe, Balazs [4 ]
Magalhaes, Kelly G. [1 ]
Castro-Faria-Neto, Hugo C. [1 ]
Nagy, Laszlo [3 ]
Bozza, Patricia T. [1 ]
机构
[1] Fundacao Oswaldo Cruz, Inst Oswaldo Cruz, Lab Imunofarmacol, BR-21045900 Rio De Janeiro, Brazil
[2] Fundacao Oswaldo Cruz, Inst Oswaldo Cruz, Lab Inflamacao, BR-21045900 Rio De Janeiro, Brazil
[3] Univ Debrecen, Dept Biochem & Mol Biol, Debrecen, Hungary
[4] Univ Debrecen, Dept Pathol, Med & Hlth Sci Ctr, Res Ctr Mol Med, Debrecen, Hungary
基金
英国惠康基金;
关键词
TOLL-LIKE RECEPTORS; RETINOID-X-RECEPTOR; MACROPHAGE-GENE-EXPRESSION; INNATE IMMUNE-RESPONSE; PPAR-GAMMA; BODY FORMATION; IN-VIVO; INTRACELLULAR DOMAINS; NUCLEAR RECEPTORS; OXIDIZED LDL;
D O I
10.4049/jimmunol.0900365
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Macrophages have important roles in both lipid metabolism and inflammation and are central to immunity to intracellular pathogens. Foam-like, lipid-laden macrophages are present during the course of mycobacterial infection and have recently been implicated in mycobacterial pathogenesis. In this study, we analyzed the molecular mechanisms underlying the formation of macrophage lipid bodies (lipid droplets) during Mycobacterium bovis bacillus Calmette-Guerin (BCG) infection, focusing on the role of the lipid-activated nuclear receptor peroxisome proliferator-activated receptor gamma (PPAR gamma). We found that BCG infection induced increased expression of PPAR gamma that paralleled the augmented lipid body formation and PGE(2) synthesis in mouse peritoneal macrophages. BCG-induced PPAR gamma expression and lipid body formation were diminished in macrophages from TLR2-deficient mice, suggesting a key role for TLR2. The function of PPAR gamma in modulating BCG infection was demonstrated by the capacity of the PPAR gamma agonist BRL49653 to potentiate lipid body formation and PGE(2) production; furthermore, pretreatment with the PPAR gamma antagonist GW9662 inhibited BCG-induced lipid body formation and PGE(2) production. BCG-induced MIP-1 alpha, IL12p70, TNF-alpha, and IL6 production was not inhibited by GW9662 treatment. Nonpathogenic Mycobacterium smegmatis failed to induce PPAR gamma expression or lipid body formation. Moreover, inhibition of PPAR gamma by GW9662 enhanced the mycobacterial killing capacity of macrophages. Our findings show that PPAR gamma is involved in lipid body biogenesis, unravels a cross-talk between the innate immune receptor TLR2 and the lipid-activated nuclear receptor PPAR gamma that coordinates lipid metabolism and inflammation in BCG-infected macrophages, thereby potentially affecting mycobacterial pathogenesis. The Journal of Immunology, 2009, 183: 1337-1345.
引用
收藏
页码:1337 / 1345
页数:9
相关论文
共 56 条
[31]   Differential effects of a toll-like receptor antagonist on Mycobacterium tuberculosis-induced macrophage responses [J].
Means, TK ;
Jones, BW ;
Schromm, AB ;
Shurtleff, BA ;
Smith, JA ;
Keane, J ;
Golenbock, DT ;
Vogel, SN ;
Fenton, MJ .
JOURNAL OF IMMUNOLOGY, 2001, 166 (06) :4074-4082
[32]   Macrophage lipid body induction by Chagas disease in vivo: putative intracellular domains for eicosanoid formation during infection [J].
Melo, RCN ;
D'Avila, H ;
Fabrino, DL ;
Almeida, PE ;
Bozza, PT .
TISSUE & CELL, 2003, 35 (01) :59-67
[33]   Oxidized LDL regulates macrophage gene expression through ligand activation of PPARγ [J].
Nagy, L ;
Tontonoz, P ;
Alvarez, JGA ;
Chen, HW ;
Evans, RM .
CELL, 1998, 93 (02) :229-240
[34]   Is Adipose Tissue a Place for Mycobacterium tuberculosis Persistence? [J].
Neyrolles, Olivier ;
Hernandez-Pando, Rogelio ;
Pietri-Rouxel, France ;
Fornes, Paul ;
Tailleux, Ludovic ;
Barrios Payan, Jorge Alberto ;
Pivert, Elisabeth ;
Bordat, Yann ;
Aguilar, Diane ;
Prevost, Marie-Christine ;
Petit, Caroline ;
Gicquel, Brigitte .
PLOS ONE, 2006, 1 (01)
[35]   Macrophage-specific PPARγ controls alternative activation and improves insulin resistance [J].
Odegaard, Justin I. ;
Ricardo-Gonzalez, Roberto R. ;
Goforth, Matthew H. ;
Morel, Christine R. ;
Subramanian, Vidya ;
Mukundan, Lata ;
Eagle, Alex Red ;
Vats, Divya ;
Brombacher, Frank ;
Ferrante, Anthony W. ;
Chawla, Ajay .
NATURE, 2007, 447 (7148) :1116-U12
[36]   Molecular determinants of crosstalk between nuclear receptors and toll-like receptors [J].
Ogawa, S ;
Lozach, J ;
Benner, C ;
Pascual, G ;
Tangirala, RK ;
Westin, S ;
Hoffmann, A ;
Subramaniam, S ;
David, M ;
Rosenfeld, MG ;
Glass, CK .
CELL, 2005, 122 (05) :707-721
[37]   The repertoire for pattern recognition of pathogens by the innate immune system is defined by cooperation between Toll-like receptors [J].
Ozinsky, A ;
Underhill, DM ;
Fontenot, JD ;
Hajjar, AM ;
Smith, KD ;
Wilson, CB ;
Schroeder, L ;
Aderem, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (25) :13766-13771
[38]   Lipopolysaccharide-induced leukocyte lipid body formation in vivo: Innate immunity elicited intracellular loci involved in eicosanoid metabolism [J].
Pacheco, P ;
Bozza, FA ;
Gomes, RN ;
Bozza, M ;
Weller, PF ;
Castro-Faria-Neto, HC ;
Bozza, PT .
JOURNAL OF IMMUNOLOGY, 2002, 169 (11) :6498-6506
[39]   Monocyte chemoattractarit protein-1/CC chemokine ligand 2 controls microtubule-driven biogenesis leukotriene B4-synthesizing function of macrophage lipid bodies elicited by innate immune response [J].
Pacheco, Patricia ;
Vieira-de-Abreu, Adriana ;
Gomes, Rachel N. ;
Barbosa-Lima, Giselle ;
Wermelinger, Leticia B. ;
Maya-Monteiro, Clarissa M. ;
Silva, Adriana R. ;
Bozza, Marcelo T. ;
Castro-Faria-Neto, Hugo C. ;
Bandeira-Melo, Christianne ;
Bozza, Patricia T. .
JOURNAL OF IMMUNOLOGY, 2007, 179 (12) :8500-8508
[40]   A SUMOylation-dependent pathway mediates transrepression of inflammatory response genes by PPAR-γ [J].
Pascual, G ;
Fong, AL ;
Ogawa, S ;
Gamliel, A ;
Li, AC ;
Perissi, V ;
Rose, DW ;
Willson, TM ;
Rosenfeld, MG ;
Glass, CK .
NATURE, 2005, 437 (7059) :759-763