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1.
Toxicology ; 433-434: 152405, 2020 03 30.
Article in English | MEDLINE | ID: mdl-32044396

ABSTRACT

The mycotoxin 2-Amino-14,16-dimethyloctadecan-3-ol (AOD) has been isolated from cultures of the fungus Fusarium avenaceum, one of the most prevalent Fusarium species. AOD is an analogue of sphinganine and 1-deoxysphinganine, important intermediates in the de novo biosynthesis of cellular sphingolipids. Here we studied cellular effects of AOD using the human liver cell line HepG2 as a model system. AOD (10 µM) induced a transient accumulation of vacuoles in the cells. The effect was observed at non-cytotoxic concentrations and was not linked to cell death processes. Proteomic analyses indicated that protein degradation and/or vesicular transport may be a target for AOD. Further studies revealed that AOD had only minor effects on the initiation rate of macropinocytosis and autophagy. However, the AOD-induced vacuoles were lysosomal-associated membrane protein-1 (LAMP-1) positive, suggesting that they most likely originate from lysosomes or late endosomes. Accordingly, both endosomal and autophagic protein degradation were inhibited. Further studies revealed that treatment with concanamycin A or chloroquine completely blocked the AOD-induced vacuolization, suggesting that the vacuolization is dependent of acidic lysosomes. Overall, the results strongly suggest that the increased vacuolization is due to an accumulation of AOD in lysosomes or late endosomes thereby disturbing the later stages of the endolysosomal process.


Subject(s)
Fusarium/chemistry , Liver/drug effects , Mycotoxins/toxicity , Sphingolipids/toxicity , Vacuoles/drug effects , Autophagy/drug effects , Chloroquine/pharmacology , Endosomes/drug effects , Hep G2 Cells , Humans , Liver/pathology , Lysosomes/drug effects , Lysosomes/metabolism , Macrolides/pharmacology , Proteomics , Sphingolipids/isolation & purification
2.
Environ Res ; 170: 433-442, 2019 03.
Article in English | MEDLINE | ID: mdl-30634139

ABSTRACT

Human exposure to persistent organic pollutants (POPs) begins during pregnancy and may cause adverse health effects in the fetus or later in life. The present study aimed to assess prenatal POPs exposure to Tanzanian infants and evaluate the distribution of POPs between breast milk, maternal blood, placenta and cord blood. For assessment of prenatal exposure, 48 maternal blood samples from Mount Meru Regional Referral Hospital (MMRRH), Arusha Tanzania, were analyzed for organochlorine pesticides (OCPs), polychlorinated biphenyls (PCBs), brominated flame retardants (BFRs), dioxin-like (DL) activity and perfluorinated alkyl substances (PFASs). For evaluation of POPs distribution between maternal/infant compartments, breast milk, placenta and cord blood corresponding to the maternal blood were analyzed for OCPs, PCBs and BFRs. In maternal blood, p,p´- DDE was detected in 100% of the samples ranging between 29 and 1890 ng/g lipid weight (lw). PCB-153 was the only PCB detected in maternal blood, with detection rate of 29% and concentrations up to 116 ng/g lw. BDE-47 was detected in 65% of the maternal blood samples, ranging between

Subject(s)
Environmental Pollutants/metabolism , Milk, Human/metabolism , Prenatal Exposure Delayed Effects/epidemiology , Environmental Monitoring , Family , Female , Fetal Blood , Humans , Infant , Kenya , Maternal Exposure/statistics & numerical data , Placenta , Polychlorinated Biphenyls/metabolism , Pregnancy , Tanzania/epidemiology
3.
Toxicol In Vitro ; 36: 120-132, 2016 Oct.
Article in English | MEDLINE | ID: mdl-27453131

ABSTRACT

Mycotoxins commonly contaminate food and may pose a risk for disease in humans and animals. As they frequently co-occur, mixed exposures often take place. Monocyte function, including differentiation into active macrophages, is a central part of the immune response. Here we studied effects of naturally co-occurring mycotoxins in grain on monocyte function, and effects of individual and combined exposure on the differentiation process from monocytes into macrophages. The THP-1 cell line was used as a model system. The mycotoxins 2-amino-14,16-dimethyloctadecan-3-ol (AOD), alternariol (AOH), enniatin B (ENNB), deoxynivalenol (DON), sterigmatocystin (ST) and zearalenone (ZEA) differently affected cell viability in THP-1 monocytes, with DON as the most potent. AOH, ZEA and DON inhibited differentiation from monocytes into macrophages. Using this differentiation model, combined exposure of AOH, ZEA and DON were mainly found to be additive. However, the combination AOH+ZEA had somewhat synergistic effect at lower concentrations. Furthermore, alterations in macrophage functionality were found, as single exposure of AOH and ZEA inhibited lipopolysaccharide (LPS) induced TNF-α secretion, while DON increased this response. Overall, the mycotoxins affected monocyte viability and differentiation into macrophages differently. Combined exposures affected the differentiation process mainly additively.


Subject(s)
Immunologic Factors/toxicity , Monocytes/drug effects , Mycotoxins/toxicity , Cell Differentiation/drug effects , Cell Line, Tumor , Cell Survival/drug effects , Drug Interactions , Humans , Lipopolysaccharide Receptors/metabolism , Macrophage Activation/drug effects , Macrophages/cytology , Macrophages/drug effects , Macrophages/immunology , Monocytes/cytology , Tumor Necrosis Factor-alpha/genetics , Tumor Necrosis Factor-alpha/metabolism
4.
Toxicol Lett ; 239(1): 9-21, 2015 Nov 19.
Article in English | MEDLINE | ID: mdl-26341179

ABSTRACT

Alternariol (AOH), a mycotoxin produced by Alternaria fungi, is frequently found as a contaminant in fruit and grain products. Here we examined if AOH could modify macrophage phenotype and inflammatory responses. In RAW 264.7 mouse macrophages AOH changed the cell morphology of from round to star-shaped cells, with increased levels of CD83, CD86, CD11b, MHCII and endocytic activity. TNFα and IL-6 were enhanced at mRNA-level, but only TNFα showed increased secretion. No changes were found in IL-10 or IL-12p40 expression. Primary human macrophages changed the cell morphology from round into elongated shapes with dendrite-like protrusions in response to AOH. The levels of CD83 and CD86 were increased, HLA-DR and CD68 were down-regulated and CD80, CD200R and CD163 remained unchanged. Increased secretion of TNFα and IL-6 were found after AOH exposure, while IL-8, IL-10 and IL-12p70 were not changed. Furthermore, AOH reduced macrophage endocytic activity and autophagosomes. AOH was also found to induce DNA damage, which is suggested to be linked to the morphological and phenotypical changes. Thus, AOH was found to change the morphology and phenotype of the two cell models, but either of them could be characterized as typical M1/M2 macrophages or as dendritic cells (DC).


Subject(s)
DNA Damage , Lactones/toxicity , Macrophages/drug effects , Mycotoxins/toxicity , Animals , Cell Cycle Checkpoints/drug effects , Cells, Cultured , Cytokines/metabolism , Female , Humans , Inflammation/chemically induced , Macrophages/immunology , Macrophages/metabolism , Macrophages/pathology , Mice , Phenotype , Reactive Oxygen Species/metabolism
5.
Toxicology ; 326: 119-29, 2014 Dec 04.
Article in English | MEDLINE | ID: mdl-25456271

ABSTRACT

The mycotoxin alternariol (AOH), a frequent contaminant in fruit and grain, is known to induce cellular stress responses such as reactive oxygen production, DNA damage and cell cycle arrest. Cellular stress is often connected to autophagy, and we employed the RAW264.7 macrophage model to test the hypothesis that AOH induces autophagy. Indeed, AOH treatment led to a massive increase in acidic vacuoles often observed upon autophagy induction. Moreover, expression of the autophagy marker LC3 was markedly increased and there was a strong accumulation of LC3-positive puncta. Increased autophagic activity was verified biochemically by measuring the degradation rate of long-lived proteins. Furthermore, AOH induced expression of Sestrin2 and phosphorylation of AMPK as well as reduced phosphorylation of mTOR and S6 kinase, common mediators of signaling pathways involved in autophagy. Transmission electron microscopy analyzes of AOH treated cells not only clearly displayed structures associated with autophagy such as autophagosomes and autolysosomes, but also the appearance of lamellar bodies. Prolonged AOH treatment resulted in changed cell morphology from round into more star-shaped as well as increased ß-galactosidase activity. This suggests that the cells eventually entered senescence. In conclusion, our data identify here AOH as an inducer of both autophagy and senescence. These effects are suggested to be to be linked to AOH-induced DSB (via a reported effect on topoisomerase activity), resulting in an activation of p53 and the Sestrin2-AMPK-mTOR-S6K signaling pathway.


Subject(s)
Autophagy/drug effects , Cellular Senescence/drug effects , DNA Breaks, Double-Stranded , Lactones/toxicity , Macrophages/drug effects , Mycotoxins/toxicity , Stress, Physiological/drug effects , AMP-Activated Protein Kinases/metabolism , Animals , Cell Line , Dose-Response Relationship, Drug , Macrophages/metabolism , Macrophages/ultrastructure , Mice , Nuclear Proteins/metabolism , Peroxidases , Ribosomal Protein S6 Kinases/metabolism , Signal Transduction/drug effects , TOR Serine-Threonine Kinases/metabolism , Time Factors , Tumor Suppressor Protein p53/metabolism
6.
Toxicol Rep ; 1: 459-473, 2014.
Article in English | MEDLINE | ID: mdl-28962260

ABSTRACT

This study explores and characterizes the toxicity of two closely related carcinogenic dinitro-pyrenes (DNPs), 1,3-DNP and 1,8-DNP, in human bronchial epithelial BEAS-2B cells and mouse hepatoma Hepa1c1c7 cells. Neither 1,3-DNP nor 1,8-DNP (3-30 µM) induced cell death in BEAS-2B cells. In Hepa1c1c7 cells only 1,3-DNP (10-30 µM) induced a mixture of apoptotic and necrotic cell death after 24 h. Both compounds increased the level of reactive oxygen species (ROS) in BEAS-2B as measured by CM-H2DCFDA-fluorescence. A corresponding increase in oxidative damage to DNA was revealed by the formamidopyrimidine-DNA glycosylase (fpg)-modified comet assay. Without fpg, DNP-induced DNA damage detected by the comet assay was only found in Hepa1c1c7 cells. Only 1,8-DNP formed DNA adduct measured by 32P-postlabelling. In Hepa1c1c cells, 1,8-DNP induced phosphorylation of H2AX (γH2AX) and p53 at a lower concentration than 1,3-DNP and there was no direct correlation between DNA damage/DNA damage response (DR) and induced cytotoxicity. On the other hand, 1,3-DNP-induced apoptosis was inhibited by pifithrin-α, an inhibitor of p53 transcriptional activity. Furthermore, 1,3-DNP triggered an unfolded protein response (UPR), as measured by an increased expression of CHOP, ATF4 and XBP1. Thus, other types of damage possibly linked to endoplasmic reticulum (ER)-stress and/or UPR could be involved in the induced apoptosis. Our results suggest that the stronger carcinogenic potency of 1,8-DNP compared to 1,3-DNP is linked to its higher genotoxic effects. This in combination with its lower potency to induce cell death may increase the probability of causing mutations.

7.
Toxicol Lett ; 219(1): 8-17, 2013 May 10.
Article in English | MEDLINE | ID: mdl-23454835

ABSTRACT

The mycotoxin alternariol (AOH), a frequent contaminant in fruit and cereal products, is known to induce DNA damage with subsequent cell cycle arrest. Here we elucidated the effects of AOH on stages of cell cycle progression using the RAW 264.7 macrophage model. AOH resulted in an accumulation of cells in the G2/M-phase (4N). Most cells exhibited a large G2 nucleus whereas numbers of true mitotic cells were reduced relative to control. Both cyclin B1 and p-cdc2 levels increased, while cyclin B1 remained in the cytoplasm; suggesting arrest in the G2/M transition point. Remarkably, after exposure to AOH for 24h, most of the cells exhibited abnormally shaped nuclei, as evidenced by partly divided nuclei, nuclear blebs, polyploidy and micronuclei (MN). AOH treatment also induced abnormal Aurora B bridges, suggesting that cytokinesis was interfered within cells undergoing karyokinesis. A minor part of the resultant G1 tetraploid (4N) cells re-entered the S-phase and progressed to 8N cells.


Subject(s)
Cell Nucleus/drug effects , G2 Phase Cell Cycle Checkpoints/drug effects , Lactones/toxicity , M Phase Cell Cycle Checkpoints/drug effects , Macrophages/drug effects , Mycotoxins/toxicity , Animals , Blotting, Western , Cell Cycle Proteins/metabolism , Cell Line , Cell Nucleus/metabolism , Cell Nucleus/ultrastructure , Cell Nucleus Shape/drug effects , Cell Nucleus Size/drug effects , Flow Cytometry , Macrophages/metabolism , Macrophages/ultrastructure , Membrane Fluidity/drug effects , Mice , Microscopy, Confocal , Microscopy, Electron, Transmission , Microscopy, Fluorescence , Polyploidy
8.
Mutat Res ; 738-739: 1-11, 2012.
Article in English | MEDLINE | ID: mdl-23031795

ABSTRACT

Alternariol (AOH), a mycotoxin produced by Alternaria sp, is often found as a contaminant in fruit and cereal products. Here we employed the murine macrophage cell line RAW 264.7 to test the hypothesis that AOH causes toxicity as a response to DNA damage. AOH at concentrations of 15-30µM almost completely blocked cell proliferation. Within 30min treatment, AOH (30µM) significantly increased the level of reactive oxygen species (ROS). Furthermore, DNA base oxidations as well as DNA strand breaks and/or alkaline labile sites were detected by the comet assay after 2h exposure of AOH. Cell death (mostly necrosis) was observed after prolonged exposure to the highest concentration of AOH (60µM for 24 and 48h) in our study. The DNA damage response involved phosphorylation (activation) of histone H2AX and check point kinase-1- and 2 (Chk-1/2). Moreover, AOH activated p53 and increased the expression of p21, Cyclin B, MDM2, and Sestrin 2; likewise the level of several miRNA was affected. AOH-induced Sestrin 2 expression was regulated by p53 and could at least partly be inhibited by antioxidants, suggesting a role of ROS in the response. Interestingly, the addition of antioxidants did not inhibit cell cycle arrest. Although the formation of ROS by itself was not directly linked cell proliferation, AOH-induced DNA damage and resulting transcriptional changes in p21, MDM2, and Cyclin B likely contribute to the reduced cell proliferation; while Sestrin 2 would contribute to the oxidant defense.


Subject(s)
Cell Cycle Checkpoints/drug effects , DNA Damage/drug effects , Lactones/toxicity , Mycotoxins/toxicity , Animals , Cell Line , Cell Proliferation/drug effects , Comet Assay , Genes, p53 , Macrophages , Mice , Nuclear Proteins , Peroxidases , Phosphorylation , Proteins/metabolism , Reactive Oxygen Species , Signal Transduction
9.
Chem Res Toxicol ; 25(8): 1662-74, 2012 Aug 20.
Article in English | MEDLINE | ID: mdl-22731695

ABSTRACT

Enniatins are cyclic hexadepsipeptidic mycotoxins with ionophoric, antibiotic, and insecticidal activity. Enniatin B (EnnB), the most important analogue, is produced by many Fusarium species and is a common contaminant in grain-based foods. The compound's cytotoxic potential has been shown in different experiments; however, the mode of action has not been detailed so far. In the present study, several mutually confirmative experiments have been performed indicating that EnnB-initiated cytotoxicity could be connected with lysosomal membrane permeabilization (LMP). Lysosomal functionality, as assessed by the Neutral Red assay, was already affected after 3 h of toxin exposure. After 24 h, cell proliferation was decreased, and there was indication for a cell cycle arrest in the G(2)/M phase leading to the initiation of apoptosis or necrosis. Intracellular ROS-production was observed. However, antioxidants did not alter the observed EnnB-induced loss of lysosomal functionality leading to the conclusion that ROS was not an initial factor but one produced later in the event cascade. The collected data suggested that lysosomal destabilization is an upstream event in EnnB-initiated cytotoxicity followed by a certain extent of translocation of cathepsins into the cytosol, which was observed using immunological and proteomic methods. It appeared that cell death induced by EnnB was delayed and occurred not as a massive lysosomal breakdown but was probably progressing and leading to partial and selective LMP, starting a nonapoptotic cell death pathway with morphological features that had been previously considered as necrotic. The molecular mechanism of EnnB-triggered lysosomal destabilization, and the cellular processes leading to mitochondrial permeabilization and cell death are still unknown. They may, however, be connected to the compound's ionophoric properties.


Subject(s)
Depsipeptides/toxicity , Lysosomes/metabolism , Apoptosis/drug effects , Caco-2 Cells , Cathepsins/metabolism , Cell Membrane Permeability/drug effects , Fusarium/metabolism , G2 Phase Cell Cycle Checkpoints/drug effects , Humans , M Phase Cell Cycle Checkpoints/drug effects , Reactive Oxygen Species/metabolism
10.
Toxicol Appl Pharmacol ; 261(1): 74-87, 2012 May 15.
Article in English | MEDLINE | ID: mdl-22483798

ABSTRACT

The mycotoxin enniatin B (EnnB) is predominantly produced by species of the Fusarium genera, and often found in grain. The cytotoxic effect of EnnB has been suggested to be related to its ability to form ionophores in cell membranes. The present study examines the effects of EnnB on cell death, differentiation, proliferation and pro-inflammatory responses in the murine monocyte-macrophage cell line RAW 264.7. Exposure to EnnB for 24 h caused an accumulation of cells in the G0/G1-phase with a corresponding decrease in cyclin D1. This cell cycle-arrest was possibly also linked to the reduced cellular ability to capture and internalize receptors as illustrated by the lipid marker ganglioside GM1. EnnB also increased the number of apoptotic, early apoptotic and necrotic cells, as well as cells with elongated spindle-like morphology. The Neutral Red assay indicated that EnnB induced lysosomal damage; supported by transmission electron microscopy (TEM) showing accumulation of lipids inside the lysosomes forming lamellar structures/myelin bodies. Enhanced levels of activated caspase-1 were observed after EnnB exposure and the caspase-1 specific inhibitor ZYVAD-FMK reduced EnnB-induced apoptosis. Moreover, EnnB increased the release of interleukin-1 beta (IL-1ß) in cells primed with lipopolysaccharide (LPS), and this response was reduced by both ZYVAD-FMK and the cathepsin B inhibitor CA-074Me. In conclusion, EnnB was found to induce cell cycle arrest, cell death and inflammation. Caspase-1 appeared to be involved in the apoptosis and release of IL-1ß and possibly activation of the inflammasome through lysosomal damage and leakage of cathepsin B.


Subject(s)
Cell Death/drug effects , Depsipeptides/toxicity , Inflammation/chemically induced , Macrophages/drug effects , Animals , Apoptosis/drug effects , Caspase 1/metabolism , Cathepsin B/metabolism , Cell Cycle Checkpoints/drug effects , Cell Differentiation/drug effects , Cell Line , Cell Proliferation/drug effects , Inflammasomes/metabolism , Inflammation/pathology , Interleukin-1beta/metabolism , Lysosomes/drug effects , Lysosomes/metabolism , Macrophages/metabolism , Mice , Microscopy, Electron, Transmission
11.
Mutat Res ; 723(2): 158-64, 2011 Aug 16.
Article in English | MEDLINE | ID: mdl-21640196

ABSTRACT

The methacrylate monomer 2-hydroxyethyl methacrylate (HEMA) is commonly used in resin-based dental restorative materials. These materials are cured in situ and HEMA and other monomers have been identified in ambient air during dental surgery. In vitro studies have demonstrated a toxic potential of methacrylates, and concerns have been raised regarding possible health effects due to inhalation. In this study we have investigated the mechanisms of HEMA-induced toxicity in the human lung epithelial cell line BEAS-2B. Depletion of cellular glutathione (GSH) and an increased level of reactive oxygen species (ROS) were seen after 2h of exposure, but the levels were restored to control levels after 12h. After 24h, inhibited cell proliferation and apoptotic cell death were found. The results of the Comet assay and the observed phosphorylation of DNA-damage-associated signalling proteins including Chk2, H2AX, and p53 suggest that the toxicity of HEMA is mediated by DNA damage. Further, the antioxidant trolox did not counteract the HEMA-induced cell-cycle arrest, which indicates that the DNA damage is of non-oxidative origin.


Subject(s)
Apoptosis , Cell Cycle , DNA Damage/drug effects , Dental Materials/toxicity , Methacrylates/toxicity , Respiratory Mucosa/drug effects , Antioxidants/pharmacology , Apoptosis/drug effects , Cell Cycle/drug effects , Cell Line , Chromans/pharmacology , Humans , Reactive Oxygen Species/metabolism
12.
Mutat Res ; 684(1-2): 11-23, 2010 Feb 03.
Article in English | MEDLINE | ID: mdl-19941874

ABSTRACT

3-Nitrobenzanthrone (3-NBA) is a mutagenic and carcinogenic environmental pollutant found in diesel exhaust and urban air pollution. In the present work we have characterised the effects of 3-NBA and its metabolite 3-aminobenzanthrone (3-ABA) on cell death and cytokine release in mouse hepatoma Hepa1c1c7 cells. These effects were related to induced DNA damage and changes in cell signalling pathways. 3-NBA resulted in cell death and caused most DNA damage as judged by the amount of DNA adducts ((32)P-postlabelling assay), single strand (ss)DNA breaks and oxidative DNA lesions (comet assay) detected. An increased phosphorylation of H2AX, chk1, chk2 and partly ATM was observed using flow cytometry and/or Western blotting. Both compounds increased phosphorylation of p53 and MAPKs (ERK, p38 and JNK). However, only 3-NBA caused an accumulation of p53 in the nucleus and a translocation of Bax to the mitochondria. The p53 inhibitor pifithrin-alpha inhibited 3-NBA-induced apoptosis, indicating that cell death was a result of the triggering of DNA signalling pathways. The highest phosphorylation of Akt and degradation of IkappaB-alpha (suggesting activation of NF-kappaB) were also seen after treatment with 3-NBA. In contrast 3-ABA increased IL-6 release, but caused little or no toxicity. Cytokine release was inhibited by PD98059 and curcumin, suggesting that ERK and NF-kappaB play a role in this process. In conclusion, 3-NBA seems to have a higher potency to induce DNA damage compatible with its cytotoxic effects, while 3-ABA seems to have a greater effect on the immune system.


Subject(s)
Benz(a)Anthracenes/toxicity , DNA Damage/drug effects , Environmental Pollutants/toxicity , Liver Neoplasms, Experimental/genetics , Mutagens/toxicity , Signal Transduction/drug effects , Animals , Benz(a)Anthracenes/administration & dosage , Cell Cycle/drug effects , Cell Death/drug effects , Cell Line, Tumor , Chemokine CXCL2/metabolism , Interleukin-6/metabolism , Mice , Receptors, Aryl Hydrocarbon/metabolism
13.
J Biol Chem ; 276(38): 35344-51, 2001 Sep 21.
Article in English | MEDLINE | ID: mdl-11445585

ABSTRACT

The transcription factor nuclear factor kappaB (NF-kappaB) plays crucial roles in a wide variety of biological functions such as inflammation, stress, and immune responses. We have shown previously that secretory nonpancreatic (snp) and cytosolic (c) phospholipase A(2) (PLA(2)) regulate NF-kappaB activation in response to tumor necrosis factor (TNF)-alpha or interleukin (IL)-1beta activation and that a functional coupling mediated by the 5-lipoxygenase (5-LO) metabolite leukotriene B(4) (LTB(4)) exists between snpPLA(2) and cPLA(2) in human keratinocytes. In this study, we have further investigated the mechanisms of PLA(2)-modulated NF-kappaB activation with respect to specific kinases involved in TNF-alpha/IL-1beta-stimulated cPLA(2) phosphorylation and NF-kappaB activation. The protein kinase C (PKC) inhibitors RO 31-8220, Gö 6976, and a pseudosubstrate peptide inhibitor of atypical PKCs attenuated arachidonic acid release, cPLA(2) phosphorylation, and NF-kappaB activation induced by TNF-alpha or IL-1beta, thus indicating atypical PKCs in cPLA(2) regulation and transcription factor activation. Transfection of a kinase-inactive mutant of lambda/iotaPKC in NIH-3T3 fibroblasts completely abolished TNF-alpha/IL-1beta-stimulated cellular arachidonic acid release and cPLA(2) activation assayed in vitro, confirming the role of lambda/iotaPKC in cPLA(2) regulation. Furthermore, lambda/iotaPKC and cPLA(2) phosphorylation was attenuated by phosphatidyinositol 3-kinase (PI3-kinase) inhibitors, which also reduced NF-kappaB activation in response to TNF-alpha and IL-1beta, indicating a role for PI3-kinase in these processes in human keratinocytes. TNF-alpha- and IL-1beta-induced phosphorylation of lambda/iotaPKC was attenuated by inhibitors toward snpPLA(2) and 5-LO and by an LTB(4) receptor antagonist, suggesting lambda/iotaPKC as a downstream effector of snpPLA(2) and 5-LO/LTB(4) the LTB(4) receptor. Hence, lambda/iotaPKC regulates snpPLA(2)/LTB(4)-mediated cPLA(2) activation, cellular arachidonic acid release, and NF-kappaB activation induced by TNF-alpha and IL-1beta. In addition, our results demonstrate that PI3-kinase and lambda/iotaPKC are involved in cytokine-induced cPLA(2) and NF-kappaB activation, thus identifying lambda/iotaPKC as a novel regulator of cPLA(2).


Subject(s)
Arachidonate 5-Lipoxygenase/metabolism , Interleukin-1/metabolism , Isoenzymes/metabolism , Leukotriene B4/metabolism , NF-kappa B/metabolism , Phospholipases A/metabolism , Protein Kinase C/metabolism , Tumor Necrosis Factor-alpha/metabolism , 3T3 Cells , Animals , Arachidonic Acid/metabolism , Humans , Keratinocytes/metabolism , Mice , Mitogen-Activated Protein Kinases/metabolism , Phosphatidylinositol 3-Kinases/metabolism , Phosphorylation , Receptor Cross-Talk , p38 Mitogen-Activated Protein Kinases
14.
J Biol Chem ; 276(32): 30527-36, 2001 Aug 10.
Article in English | MEDLINE | ID: mdl-11390371

ABSTRACT

Tumor necrosis factor (TNF)-alpha and interleukin (IL)-1beta are potent activators of the transcription factor NF-kappaB, induced during inflammatory conditions. We have previously shown that both secretory and cytosolic phospholipase A(2) (PLA(2)) are involved in TNF-alpha- and IL-1beta-induced NF-kappaB activation. In this study, we have addressed the mechanism of PLA(2) involvement with respect to downstream arachidonic acid (AA) metabolites and the functional coupling between PLA(2)s mediating NF-kappaB activation. We show that in addition to inhibitors of secretory and cytosolic PLA(2)s, 5-lipoxygenase inhibitors attenuate TNF-alpha- and IL-1beta-stimulated NF-kappaB activation. Exogenous addition of leukotriene B(4) (LTB(4)) restored NF-kappaB activation reduced by 5-lipoxygenase inhibitors or an LTB(4) receptor antagonist, thus identifying LTB(4) as a mediator in signaling to NF-kappaB. TNF-alpha- and IL-1beta-induced AA release from cellular membranes was accompanied by phosphorylation of cytosolic PLA(2). Inhibitors of secretory PLA(2) and of 5-lipoxygenase/LTB(4) functionality markedly reduced AA release and nearly completely abolished cytosolic PLA(2) phosphorylation. This demonstrates that secretory PLA(2), through 5-lipoxygenase metabolites, is an essential upstream regulator of cytosolic PLA(2) and AA release. Our results therefore suggest the existence of a functional link between secretory and cytosolic PLA(2) in cytokine-activated keratinocytes, providing a molecular explanation for the participation of both secretory and cytosolic PLA(2) in arachidonic acid signaling and NF-kappaB activation in response to proinflammatory cytokines.


Subject(s)
Cytosol/enzymology , Interleukin-1/metabolism , NF-kappa B/metabolism , Phospholipases A/metabolism , Tumor Necrosis Factor-alpha/metabolism , Animals , Arachidonic Acid/metabolism , Bacterial Proteins , Blotting, Western , Cells, Cultured , Cytokines/metabolism , Cytosol/metabolism , DNA, Complementary/metabolism , Dose-Response Relationship, Drug , Enzyme Activation , Enzyme Inhibitors/pharmacology , Humans , Keratinocytes/metabolism , Leukotriene B4/metabolism , Lipoxygenase Inhibitors , Luciferases/metabolism , Models, Biological , NF-kappa B/chemistry , Phosphates/pharmacology , Phospholipases A/antagonists & inhibitors , Phospholipases A/chemistry , Phospholipases A2 , Phosphorylation , Precipitin Tests , Protein Binding , Protein Isoforms , Reverse Transcriptase Polymerase Chain Reaction , Signal Transduction , Streptolysins/pharmacology , Transfection , Tumor Cells, Cultured
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