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W Fiers

Publications and source records attributed to W Fiers.

At least 217 records · Page 12Linked to original sources

Search for mediators of the lipogenic effects of tumor necrosis factor: potential role for interleukin 6.

The significance of potential second messengers as mediators of the metabolic effects of tumor necrosis factor (TNF) was explored by studying their role in stimulating hepatic lipogenesis. Platelet-activating factor and prostaglandins have previously been suggested to mediate some of the toxic effects of TNF. An inhibitor of platelet-activating factor (WEB 2086) and two inhibitors of the synthesis of prostaglandins (ibuprofen and aspirin) had no effect on the ability of TNF to increase hepatic lipogenesis or serum triglyceride levels in the rat. Another inhibitor of the toxic effects of TNF, pentoxifylline, also had no effect on lipid metabolism in the rat. Catecholamines are increased after TNF administration, but alpha- and beta-adrenergic blockade did not prevent the lipogenic effects of TNF. However, interleukin 6, a cytokine whose synthesis and secretion are induced by TNF, is able to acutely stimulate hepatic lipogenesis in mice. Interleukin 6 stimulates hepatic lipogenesis by increasing hepatic citrate concentrations, the same mechanism by which TNF stimulates hepatic lipogenesis. These data suggest that interleukin 6, but not platelet-activating factor, prostaglandins, or catecholamines, could potentially mediate the lipogenic effects of TNF.

Animals↗

Transforming growth factor-beta and epidermal growth factor modulate basal and interleukin-6-induced amino acid uptake and acute phase protein synthesis in cultured rat hepatocytes.

Rat hepatocytes cultured for 2 days with interleukin-6 show increased synthesis of acute phase proteins and enhanced accumulation of 14C-labelled alpha-aminoisobutyric acid. Transforming growth factor-beta 1 (0.1-10 ng/ml) inhibits whereas epidermal growth factor (1-100 ng/ml) enhances both basal and interleukin-6-induced amino acid uptake by rat hepatocytes with only a slight alteration of acute phase protein synthesis.

Acute-Phase Proteins↗

Tumor necrosis factor induces the production of urokinase-type plasminogen activator by human endothelial cells.

Endothelial cells play an important role in the regulation of fibrinolysis by the production of several key regulatory proteins. The cytokines tumor necrosis factor (TNF), lymphotoxin, and interleukin-1 (IL-1), but not interleukin-6, increase the production of plasminogen activator inhibitor-1 (PAI-1) by endothelial cells, whereas they have no stimulatory effect on the production of tissue-type plasminogen activator (t-PA). Primary cultures of human endothelial cells release very little urokinase-type plasminogen activator (u-PA). We report here that TNF and lymphotoxin induce, in a concentration-dependent way, the production of both cellular and secreted u-PA antigen in primary and subcultured human endothelial cells. The TNF-induced increase was accompanied by a more than 10-fold increase in u-PA mRNA. Upon stimulation of early passage umbilical vein endothelial cells by TNF, u-PA was predominantly secreted at the basolateral side, whereas PAI activity and t-PA were found in more equal amounts at the apical and basolateral sides of the cell monolayers. TNF-stimulated u-PA secretion by subcultured human aorta endothelial cells showed only a marginal polarity. The u-PA antigen was present in a plasmin-activatable form (single chain u-PA) and in a nonactivatable form (probably u-PA: PAI-1 complex). During the induction of u-PA by TNF, the ratio between plasmin-activatable u-PA and total u-PA decreased markedly. This may indicate that TNF also increases the degree of u-PA activation. The parallel induction of the synthesis and secretion of both u-PA and PAI-1 by endothelial cells adds a new aspect to the alterations of the fibrinolytic system caused by inflammatory mediators. This aspect may be significant for the regulation of cell-associated and interstitial plasminogen activator activity.

Biological Factors↗

Inhibition by glucocorticoids of tumor necrosis factor-mediated cytotoxicity. Evidence against lipocortin involvement.

The role of the phospholipase inhibitor proteins, lipocortin-I and -II, in tumor necrosis factor (TNF)-mediated cytotoxicity against L929 fibrosarcoma cells was investigated. We previously reported that TNF-mediated cytotoxicity was inhibited by dexamethasone (DEX), suggesting an involvement of lipocortins. Now we show that, despite inhibition by DEX of TNF-induced arachidonic acid release, DEX has no effect on the synthesis of these lipocortins. Moreover, TNF itself has no effect on the synthesis and phosphorylation of lipocortin-I and -II. Also there was no difference in expression levels of lipocortin-I and -II between TNF-sensitive and -resistant cells. These data strongly suggest that the protective effect of DEX and other glucocorticoids is not mediated by lipocortins.

Annexins↗

Cytotoxic activity of tumor necrosis factor is inhibited by amiloride derivatives without involvement of the Na+/H+ antiporter.

Cytotoxicity of tumor necrosis factor (TNF) on L929s cells was efficiently blocked by several amiloride analogs but not by amiloride itself. This protection did not require RNA or protein synthesis. Na+/H+ antiporter-negative L-M(TK-) cells (LAP) could be killed by TNF, showing that the Na+/H+ exchanger is not required for TNF-cytotoxicity. Similar protection against TNF-mediated cell lysis by amiloride derivatives was found for LAP and L929s cells, excluding a blockade of the Na+/H+ antiporter as the cause of the protection against TNF by these agents.

Amiloride↗

Analysis of the structure-function relationship of tumour necrosis factor. Human/mouse chimeric TNF proteins: general properties and epitope analysis.

To analyse the structure-function relationship of tumour necrosis factor (TNF), a set of in-frame chimeric genes was constructed by coupling appropriate segments of the human and mouse TNF coding regions. Under control of the bacteriophage lambda inducible PL promoter high level expression of these chimeric genes was obtained in Escherichia coli. Although both human and mouse TNF were produced in E. coli as soluble proteins, a reduction of solubility was observed in some of the chimeric proteins. The specific activity was variable, but in some constructs comparable to human TNF, indicating that the structural conformation of these chimeric proteins resembled the human TNF structure. Neutralization analysis using two monoclonal antibodies directed against human TNF, indicated that the regions involved in the binding of these antibodies are distributed over multiple segments of the polypeptide. Further analysis by site-directed mutagenesis of one subregion allowed the identification of the Arg131 residue as involved in the binding of both neutralizing monoclonal antibodies; an Arg131----Gln replacement abolished antibody binding but did not affect the specific activity of TNF.

Amino Acid Sequence↗

Induction of interleukin 6 by human and murine recombinant interleukin 1 in mice.

Interleukin (IL) 6 is a pleistropic cytokine with activities, among others, on immune cells, hematopoietic precursor cells and hepatocytes. We have investigated the kinetics and amplitude of its in vivo induction in mice after injection of four different IL 1 species as well as murine (m) and human (h) tumor necrosis factor (TNF) and bacterial lipopolysaccharide (LPS) using a sensitive bioassay on 7TD1 cells to measure the IL 6 concentrations. Recombinant mIL 1 beta, administered as a single i.v. injection in mice, induced the appearance of IL 6 in the plasma with peak levels observed after 2 h. A dose-response correlation was found between serum IL 6 levels and injected IL 1 alpha concentrations at 3 and 8 h after the injection. We then compared the ability of h/mIL 1 alpha, h/mIL 1 beta, h/mTNF and LPS to induce IL 6 in mice. We found: (a) LPS is the most potent inducer of IL 6; (b) 3 h after injection, the four IL 1 preparations had induced IL 6 levels comparable with the IL 6 levels observed after TNF injection; (c) high doses of mIL 1, alpha or beta, but not hIL 1, resulted in a high IL 6 level persisting for over 8 h. We conclude that IL 1 is a potent inducer of IL 6 in vivo and that no major differences are observed between the four IL 1 preparations, as evaluated at 3 h after the injection. However, mIL 1 alpha and mIL 1 beta, in contrast to hIL 1 alpha and hIL 1 beta, induced a sustained IL 6 level over a longer time period. This pattern of prolonged IL 6 induction is even much more pronounced after mTNF injection, but not after hTNF injection.

Animals↗

Hypothermia and hypoglycemia induced by anti-CD3 monoclonal antibody in mice: role of tumor necrosis factor.

The possible involvement of tumor necrosis factor-alpha (TNF) in the metabolic disturbances induced by anti-CD3 monoclonal antibodies (mAb) was analyzed in DBA/2 mice injected with 50 micrograms of the anti-murine CD3 mAb 145-2C11. First, we found that 145-2C11 induces a profound hypothermia maximal between 3 h and 6 h after the injection (at 3 h: -3.0 +/- 0.1 degrees C) as well as hypoglycemia (blood glucose levels at 6 h and 24 h: 76 +/- 13 mg/100 ml and 92 +/- 22 mg/100 ml, respectively, p less than 0.001 as compared with control values). These metabolic changes are preceded by the release of TNF into the circulation (peak serum TNF levels at 2 h: 50 +/- 23 pg/ml, p less than 0.01 as compared with controls). The release of TNF induced by 145-2C11 depends on the effect of the mAb on T cells as it is not observed in athymic nude mice while lipopolysaccharide-resistant C3H/HeJ mice also display a significant rise in serum TNF (peak levels at 2 h: 59 +/- 44 pg/ml). Pretreatment of DBA/2 mice with 12 mg of rabbit anti-murine TNF antibodies completely prevents the hypothermia while the hypoglycemia is significantly attenuated. Finally, F(ab')2 fragments of 145-2C11 induce only a transient hypoglycemia (blood glucose levels at 6 h: 109 +/- 14, p less than 0.001 as compared with controls) but neither hypothermia nor significant TNF release. We conclude that TNF is a major mediator of the acute metabolic changes induced by the intact form of 145-2C11.

Animals↗

Modulation of cellular susceptibility to the cytotoxic/cytostatic action of tumor necrosis factor by adenovirus E1 gene expression is cell type-dependent.

Primary baby rat kidney cells, primary human embryonic retinoblast cells, established NIH3T3 and established normal rat kidney (NRK) cells, expressing E1A and/or E1B gene regions of adenovirus 5 (Ad5) or Ad12, were investigated for susceptibility to the cytotoxic/cytostatic action of Tumor Necrosis Factor (TNF). In the primary cells and in the NRK cells, there was no correlation between TNF sensitivity and E1 gene expression; neither did sensitivity to TNF correlate with the oncogenicity of the Ad serotype. In contrast, the expression of Ad E1 gene regions in NIH3T3 cells was found to enhance TNF sensitivity of this cell line. Differences in E1A expression levels between cell types cannot explain this discrepancy regarding modulation of TNF sensitivity by E1A.

Adenovirus Early Proteins↗

Comparative activity of human and murine tumor necrosis factor in toxicity and anti-infectious assays in mice.

In comparative experiments, the lethal effect of rHuTNF or rMuTNF was evaluated in animals sensitized by adrenalectomy or galactosamine treatment. No clear-cut difference was observed in the effective dose irrespective of the origin of the TNF preparation in Swiss or in C3H/HeJ mice. The latter mouse substrain known to be a low responder to LPS was used in the assays to evaluate the influence of LPS contamination in TNF-induced responses. Like LPS, TNF was shown to induce abortion in pregnant mice, and the mortality rate of foetuses was almost the same in animals challenged with either rHuTNF or rMuTNF. No species preference was apparent in the protective effect of TNF against a bacterial challenge. In adult mice subsequently infected with Klebsiella pneumoniae or Listeria monocytogenes, the survival rate was comparable in groups treated with both TNF preparations. In contrast, in young mice rHuTNF and rMuTNF were ineffective against Listeria and poorly active against Klebsiella organisms, whereas a significant effect was obtained with crude mouse serum containing TNF.

Abortifacient Agents, Nonsteroidal↗

Intraperitoneal secretion of interleukin-6 during continuous ambulatory peritoneal dialysis.

Interleukin-6 (IL-6) was determined in serum and peritoneal dialysis effluent (PDE) of patients on chronic ambulatory peritoneal dialysis (CAPD) by a biological assay measuring the proliferation of the IL-6-dependent 7TD1 cell line. Six patients free of peritonitis displayed low but significant levels of IL-6 (mean +/- 42 pg/ml) in PDE, while IL-6 was undetectable in serum. In 6 patients with staphylococcal peritonitis, a tremendous increase in PDE levels of IL-6 was noted (range: 5,832-37,491 pg/ml), while serum IL-6 remained either undetectable or on a low level except in one case. After 5 days of antibiotic treatment, IL-6 levels in PDE returned to basal values. We conclude that CAPD results in an intraperitoneal secretion of IL-6 which is markedly but transiently increased during peritonitis episodes.

Ascitic Fluid↗

Growth of CD34+ acute myeloblastic leukemia colony-forming cells in response to recombinant hematopoietic growth factors.

In order to minimize the interactions of clonogenic cells with accessory cells and characterize the direct effect of recombinant hematopoietic growth factors (HGF) on acute myelogenous leukemia colony-forming cells (AML-CFU), the response of CD34+ AML-CFU to individual or combined recombinant HGF, i.e., interleukin-1 (IL-1), interleukin-3 (IL-3), interleukin-6 (IL-6), granulocyte-macrophage colony-stimulating factor (GM-CSF), granulocyte colony-stimulating factor (G-CSF), and macrophage colony-stimulating factor (M-CSF), was studied in 10 patients and compared with the growth response obtained from unfractionated marrow cells. IL-3 and GM-CSF had a similar stimulating activity on AML-CFU growth. G-CSF resulted the most efficient stimulus for colony formation and was additive or synergistic with IL-3 and GM-CSF, M-CSF, used alone, had a negligible stimulating activity. When CD34+ cells were used, IL-1 by itself had a low stimulating activity and displayed little or no synergy with IL-3, GM-CSF, and G-CSF. On the contrary, when unfractionated cells were used, IL-1 was very effective in inducing AML-CFU formation and was markedly synergistic with IL-3 and GM-CSF. These results show that IL-1-induced leukemic colony formation is prevalently mediated by accessory cells. IL-6 supported AML-CFU growth in seven of 10 cases, thus showing a direct effect on CD34+ leukemic cells, and enhanced the growth of IL-3-(+47 to +167%) and GM-CSF-dependent (+60 to +110%) AML-CFU. Recloning studies of single colonies demonstrated that primary CD34+ AML-CFU, stimulated by IL-3 and GM-CSF, generated secondary and tertiary colonies, whereas primary AML-CFU stimulated by G-CSF and IL-6 failed to give rise to secondary colonies, thus indicating a complete suppression of self-renewal. Sequential recloning of colonies grown in the presence of IL-3 + IL-6 demonstrated that addition of IL-6 and IL-3-containing plates resulted in a nearly complete suppression of self-renewal. In conclusion, these results demonstrate the heterogeneity of the CD34+ leukemic cell fraction and indicate the existence of complex regulatory events at the level of CD34+ leukemic cells. Data obtained from recloning experiments are of therapeutic interest in view of the clinical application of HGFs in the treatment of myeloid leukemias.

Adult↗

Partial transformation of human tumor cell lines showing defective interaction between unusual p53 gene product and SV40 large-T antigen.

Stable SV40 transformation of the human osteosarcoma cell line HOS yielded SV-HOS cells with high levels of large-T and quasi-original levels of p53. The latter kept its former intermediate metabolic stability, was found to be uncomplexed with SV40 large-T, however coimmunopurified with a 70 kDa protein. Upon comparison with HOS, SV40-HOS cells showed decreased serum-dependence and increased colony-forming efficiency in soft agar. SV-HOS cells were non-invasive in an in vitro assay in contrast with SV40-transformed human cells exhibiting a classical large-T-p53 complex. Both SV40-transformed human cell types were poorly tumorigenic in athymic mice in contrast with transformed HOS cells, expressing activated v-ras or met oncogenes. The p53 molecules from HOS cells and any of the HOS derivatives were underphosphorylated and showed unusual methionine- and phosphate-containing peptide fingerprints when compared with 'normal' human p53, which can associate with SV40 large-T. The structural and biological features of the HOS p53 molecules are discussed in relationship to analogous human and murine molecules in experimental and natural systems.

Animals↗

Response of murine cell lines to an IL-1/IL-2-induced factor in a rat/mouse T hybridoma (PC60): differential induction of cytokines by human IL-1 alpha and IL-1 beta and partial amino acid sequence of rat GM-CSF.

We analyzed the proliferative response of the growth factor-dependent murine cell lines FDCp1, DA1-a, 32DC1, Ea3.15, 7TD1, BCL1 and of femural bone marrow cells for their sensitivity to various cytokines, viz. rhIL-1 beta, rhTNF, rhIL-2, mIL-3, rmIL-4, rmIL-5, rhIL-6, rhG-CSF and rmGM-CSF. We also tested for IL-1 and TNF-mediated cytokine secretion by several T cell lines and thymocytes. In all T cell systems, IL-1 alpha and IL-1 beta were equally active in the induction of cytokine production, except for the rat/mouse T cell hybridoma PC60. This cell line exhibited a 10-fold difference in specific activity for the induction of cytokine secretion between rhIL-1 alpha and the other human or murine IL-1 species. Furthermore, IL-1 and IL-2 synergistically induced PC60 cells to produce a factor, which was preferentially active on FDCp1-cells, provisionally called FDCp1-growth factor. SDS-PAGE analysis of partially purified FDCp1-GF showed 19 kDa and 24 kDa-associated biological activities. Amino-terminal and internal amino acid sequences of both bands were determined and on this basis, we identified FDCp1-GF as rat GM-CSF.

Amino Acid Sequence↗

Correlation between temperature-dependent cytoplasmic solubility and periplasmic export of a heterologous protein in Escherichia coli.

The coding sequence of mature human tumor necrosis factor (hTNF) was fused to the signal-encoding sequence of beta-lactamase (Bla). Mature hTNF was exported into the periplasm of Escherichia coli. A mutant hTNF [Van Ostade et al., FEBS Lett. 238 (1988) 347-352], which displays a temperature-dependent intracellular solubility, was fused to the same Bla signal-encoding sequence. We found that the export competence of the mutated hTNF was correlated with the intracellular solubility of this protein. We postulate that the secretion proficiency of eukaryotic proteins, when fused to a prokaryotic export signal, depends on the ability of the mature protein to readily fold into a soluble conformation.

Amino Acid Sequence↗

Paradoxical effects of tumour necrosis factor in experimental ovarian cancer.

Recombinant human tumour necrosis factor (rhTNF) had anti-tumour activity against 2 of 3 human ovarian cancer xenografts growing intraperitoneally (i.p.) in nude mice, producing a moderate (2- to 3-fold) increase in mouse survival time. rhTNF therapy caused a marked influx of polymorphonuclear neutrophils into the peritoneal cavity during the first few days of daily therapy. This was accompanied by a decrease in the number of peritoneal macrophages and lymphocytes. rhTNF also caused an increase in peripheral blood neutrophils. With continuation of daily therapy, the peritoneal neutrophil influx diminished, with restoration of the macrophage and lymphocyte populations. After 2 to 3 weeks there was a small but significant increase in peritoneal Thy 1.2+ cells. In the peripheral blood, the neutrophilia was less marked than at the start of therapy. Mild myelosuppression was indicated by significant falls in haemoglobin and platelet counts. Within 24 hr of the start of therapy in the 2 responsive xenografts (HU and LA) tumour clumps in the peritoneum were surrounded by host inflammatory cells, and tumours fixed to the omentum were infiltrated by neutrophils and mononuclear cells. In both instances necrosis was evident by 4 to 7 days. The third xenograft (OS) grew although the rhTNF therapy induced the same inflammatory changes in the peritoneum. In contrast to its positive effect on the survival of tumour-bearing mice, rhTNF promoted the adhesion of tumour cells to the peritoneum and their establishment as tumour nodules below the mesothelial surface. This phenomenon was seen in all 3 xenografts including the OS xenograft which did not respond in any other way to rhTNF therapy.

Animals↗