MIP-1α Expression Induced by Co-Stimulation of Human Monocytic Cells with Palmitate and TNF-α Involves the TLR4-IRF3 Pathway and Is Amplified by Oxidative Stress

被引:30
作者
Sindhu, Sardar [1 ]
Akhter, Nadeem [2 ]
Wilson, Ajit [2 ]
Thomas, Reeby [2 ]
Arefanian, Hossein [2 ]
Al Madhoun, Ashraf [1 ,3 ]
Al-Mulla, Fahd [3 ]
Ahmad, Rasheed [2 ]
机构
[1] Dasman Diabet Inst DDI, Anim & Imaging Core Facil, Al Soor St,POB 1180, Dasman 15462, Kuwait
[2] Dasman Diabet Inst DDI, Immunol & Microbiol, Al Soor St,POB 1180, Dasman 15462, Kuwait
[3] Dasman Diabet Inst DDI, Genet & Bioinformat, Al Soor St,POB 1180, Dasman 15462, Kuwait
关键词
palmitate; TNF-alpha; oxidative stress; ROS; MIP-1; alpha; TLR4; IRF3; metabolic inflammation; NF-KAPPA-B; INSULIN-RESISTANCE; INNATE IMMUNITY; ADIPOSE-TISSUE; CC-CHEMOKINE; P38; MAPK; TRANSCRIPTION; INFLAMMATION; INHIBITION; OBESITY;
D O I
10.3390/cells9081799
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Metabolic inflammation is associated with increased expression of saturated free fatty acids, proinflammatory cytokines, chemokines, and adipose oxidative stress. Macrophage inflammatory protein (MIP)-1 alpha recruits the inflammatory cells such as monocytes, macrophages, and neutrophils in the adipose tissue; however, the mechanisms promoting the MIP-1 alpha expression remain unclear. We hypothesized that MIP-1 alpha co-induced by palmitate and tumor necrosis factor (TNF)-alpha in monocytic cells/macrophages could be further enhanced in the presence of reactive oxygen species (ROS)-mediated oxidative stress. To investigate this, THP-1 monocytic cells and primary human macrophages were co-stimulated with palmitate and TNF-alpha and mRNA and protein levels of MIP-1 alpha were measured by using quantitative reverse transcription, polymerase chain reaction (qRT-PCR) and commercial enzyme-linked immunosorbent assays (ELISA), respectively. The cognate receptor of palmitate, toll-like receptor (TLR)-4, was blunted by genetic ablation, neutralization, and chemical inhibition. The involvement of TLR4-downstream pathways, interferon regulatory factor (IRF)-3 or myeloid differentiation (MyD)-88 factor, was determined using IRF3-siRNA or MyD88-deficient cells. Oxidative stress was induced in cells by hydrogen peroxide (H2O2) treatment and ROS induction was measured by dichloro-dihydro-fluorescein diacetate (DCFH-DA) assay. The data show that MIP-1 alpha gene/protein expression was upregulated in cells co-stimulated with palmitate/TNF-alpha compared to those stimulated with either palmitate or TNF-alpha (P< 0.05). Further, TLR4-IRF3 pathway was implicated in the cooperative induction of MIP-1 alpha in THP-1 cells, and this cooperativity between palmitate and TNF-alpha was clathrin-dependent and also required signaling through c-Jun and nuclear factor kappa-light-chain-enhancer of activated B cells (NF-kappa B). Notably, ROS itself induced MIP-1 alpha and could further promote MIP-1 alpha secretion together with palmitate and TNF-alpha. In conclusion, palmitate and TNF-alpha co-induce MIP-1 alpha in human monocytic cells via the TLR4-IRF3 pathway and signaling involving c-Jun/NF-kappa B. Importantly, oxidative stress leads to ROS-driven MIP-1 alpha amplification, which may have significance for metabolic inflammation.
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页数:21
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共 56 条
  • [11] The NF-κB regulatory network
    Brasier, Allan R.
    [J]. CARDIOVASCULAR TOXICOLOGY, 2006, 6 (02) : 111 - 130
  • [12] Direct molecular targets of resveratrol: identifying key interactions to unlock complex mechanisms
    Britton, Robert G.
    Kovoor, Christina
    Brown, Karen
    [J]. RESVERATROL AND HEALTH, 2015, 1348 : 124 - 133
  • [13] Toll-like receptor-4 mediates lipopolysaccharide-induced signal transduction
    Chow, JC
    Young, DW
    Golenbock, DT
    Christ, WJ
    Gusovsky, F
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (16) : 10689 - 10692
  • [14] de Medeiros MC, 2014, J APPL ORAL SCI, V22, P185
  • [15] OZONE INHALATION STIMULATES EXPRESSION OF A NEUTROPHIL CHEMOTACTIC PROTEIN, MACROPHAGE INFLAMMATORY PROTEIN-2
    DRISCOLL, KE
    SIMPSON, L
    CARTER, J
    HASSENBEIN, D
    LEIKAUF, GD
    [J]. TOXICOLOGY AND APPLIED PHARMACOLOGY, 1993, 119 (02) : 306 - 309
  • [16] Mechanisms of Disease: Hypoxia and Inflammation.
    Eltzschig, Holger K.
    Carmeliet, Peter
    [J]. NEW ENGLAND JOURNAL OF MEDICINE, 2011, 364 (07) : 656 - 665
  • [17] Oxidized phospholipid inhibition of Toll-like receptor (TLR) signaling is restricted to TLR2 and TLR4 - Roles for CD14, LPS-binding protein, and MD2 as targets for specificity of inhibition
    Erridge, Clett
    Kennedy, Simon
    Spickett, Corinne M.
    Webb, David J.
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2008, 283 (36) : 24748 - 24759
  • [18] Fonseca-Alaniz MH, 2007, J PEDIAT-BRAZIL, V83, pS192, DOI 10.2223/JPED.1709
  • [19] The cellular growth rate controls overall mRNA turnover, and modulates either transcription or degradation rates of particular gene regulons
    Garcia-Martinez, Jose
    Delgado-Ramos, Lidia
    Ayala, Guillermo
    Pelechano, Vicent
    Medina, Daniel A.
    Carrasco, Fany
    Gonzalez, Ramon
    Andres-Leon, Eduardo
    Steinmetz, Lars
    Warringer, Jonas
    Chavez, Sebastian
    Perez-Ortin, Jose E.
    [J]. NUCLEIC ACIDS RESEARCH, 2016, 44 (08) : 3643 - 3658
  • [20] VEGI, a new member of the TNF family activates Nuclear Factor-κB and c-Jun N-terminal kinase and modulates cell growth
    Haridas, V
    Shrivastava, A
    Su, J
    Yu, GL
    Ni, J
    Liu, D
    Chen, SF
    Ni, YS
    Ruben, SM
    Gentz, R
    Aggarwal, BB
    [J]. ONCOGENE, 1999, 18 (47) : 6496 - 6504