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Biomedical subjects

D Wallach

Publications and source records attributed to D Wallach.

At least 91 records · Page 5Linked to original sources

Cloning and partial characterization of the promoter for the human p55 tumor necrosis factor (TNF) receptor.

An 809-bp region at the 5' flank of the human p55 tumor necrosis factor receptor (TNF-R)-encoding gene was found to be active in driving expression of the cat reporter gene, indicating that it contains a functional promoter. Deletion analysis showed that the promoter activity is present in the region between nucleotides (nt) -385 and -207; the sequence upstream from this region (nt -809 to -385) has an inhibitory effect. The promoter for the p55 TNF-R resembles housekeeping-type promoters in that it drives transcription from multiple start points (tsp) and lacks canonical TATA and CAAT box motifs. The cluster of tsp lies in a region which is particularly C+T rich. In this region, upstream from and near to the furthest upstream tsp, two closely located TCC repeat motifs were identified. These motifs also appear twice in the promoter for the epidermal growth factor receptor, where they were shown to be essential for promoter activity. The human p55 TNF-R promoter shows an overall resemblance, yet also some marked dissimilarities, to the recently described promoter for the mouse p55 TNF-R.

Animals↗

Selective up-regulation of the 75-kDa tumor necrosis factor (TNF) receptor and its mRNA by TNF and IL-1.

In cells of the fibroblastoid line SV-80, rapid down-modulation of TNF binding in response to TNF itself, or to IL-1, was followed by a gradual recovery of binding, which occurred even in the continuous presence of the cytokines. Untreated cells carried mainly the 55-kDa receptor species. In cells treated with TNF or IL-1, the 55-kDa TNF-R, although increasing after initial down-modulation, remained lower than before treatment. Expression of the 75-kDa TNF-R species upon treatment with either cytokine was markedly increased. Both TNF and IL-1 also induced a strong increase of the mRNA for the 75-kDa receptors, whereas the amount of mRNA for the 55-kDa receptors decreased. The effects of TNF on cell surface expression of the TNF-R could not be blocked with antibodies to IL-1, nor could the effects of IL-1 be blocked with antibodies to TNF, indicating that each cytokine affects the cell surface expression of the receptors independently of the other. Applying both cytokines together resulted in much stronger increase in expression of the 75-kDa TNF-R than applying each alone. Similar changes in cell surface expression and mRNA levels of the two TNF-R as observed in SV-80 cells were also found in TNF and IL-1-treated human foreskin fibroblasts. It is suggested that these sustained changes in the pattern of receptor expression contribute to the adjustment of the cellular response to TNF when formation of TNF and IL-1 takes place over a prolonged period.

Cells, Cultured↗

Interleukin-6 inhibits the proliferation of B-chronic lymphocytic leukemia cells that is induced by tumor necrosis factor-alpha or -beta.

Tumor necrosis factor (TNF-alpha) acts as a growth stimulatory factor on leukemic B lymphocytes from many patients with chronic lymphocytic leukemia (CLL). Because TNF induces production of interleukin-6 (IL-6), which has been shown to be a growth factor for myeloma and other transformed B cells, we examined the possibility that IL-6 mediates the growth-stimulatory effect of TNF on B-CLL cells. In fact, we found that IL-6 is an inhibitor of B-CLL growth. The addition of recombinant human IL-6 markedly decreased the TNF-induced B-CLL growth, and this decrease was even greater when soluble IL-6 receptor, known to act as IL-6 agonist, was added with recombinant IL-6. Conversely, neutralizing monoclonal antibodies to IL-6 and to the IL-6 receptor potentiated the growth stimulation of TNF on B-CLL cells, in line with the possibility that IL-6 functions as a negative feedback regulator of an autocrine TNF action on these B-leukemic cells. Evidence is presented that production of IL-6 by monocytes and B cells of CLL patients is low, suggesting that administration of IL-6 may be beneficial in CLL to reduce the eventual growth stimulation by TNF and, possibly, also the deficiency in platelets and Ig production in this disease.

Animals↗

Levels of soluble receptors for tumor necrosis factor type I and type II in paired synovial fluids of arthritis patients.

The objective of this study was to determine whether levels of soluble receptors for tumor necrosis factor type I and type II (sTNF-RI and sTNF-RII) as measured in paired synovial fluids (SF) of arthritis patients are associated with clinical or laboratory parameters of local inflammation. sTNF-RI and -RII were measured by ELISA. We found that sTNF-RI and -RII did not correlate with activity of local inflammation. sTNF-RI levels correlated with sTNF-RII concentrations. We concluded that sTNF-RI and -II did not represent markers for local disease activity in arthritis patients.

Adult↗

Differential regulation of tumour necrosis factor receptors (TNF-R) by IL-4; upregulation of P55 and P75 TNF-R on synovial joint mononuclear cells.

Interleukin 4 (IL-4) has previously been shown to downregulate the production of proinflammatory cytokines such as TNF-alpha, and hence has been considered to be a potential anti-inflammatory agent. In this study we have investigated the effects of IL-4 on the expression of both p55 and p75 TNF receptors (TNF-R) by flow cytometry and radioligand binding analyses and demonstrate that IL-4 downregulates both p55 and p75 TNF-R on HeLa and Jijoye cell lines in a dose dependent manner. IL-4 reduced the number of p55 TNF-R on HeLa cells from 6400 (Kd 5.1 nM) to 3900 (Kd 3.7 nM), and p75 TNF-R on Jijoye cells from 4800 (Kd 1.6 nM) to 3250 (Kd 1.5 nM). However, different effects were observed on peripheral blood mononuclear cells (PBMC). IL-4 inhibited the increase in p55 and p75 TNF-R on PBMC following adherence, whereas IL-4 upregulated p75 TNF-R expressed on PHA induced T cell blasts. To assess further the possible anti-inflammatory properties of IL-4, we studied its effects on synovial joint mononuclear cell cultures from 15 patients with inflammatory synovitis. In contrast to the differential effects of IL-4 on monocytes and T cells, IL-4 upregulated both p55 (P < 0.05) and p75 TNF-R (P < 0.005) on synovial joint cells in culture. IL-4 treatment caused a small decrease in levels of bioactive TNF-alpha in RA synovial culture supernatants, together with an increase in soluble p75 TNF-R levels although differences were not significant.(ABSTRACT TRUNCATED AT 250 WORDS)

Arthritis↗

Protective effect of natural TNF-binding protein on human TNF-induced toxicity in mice.

The in vivo protective effect of urinary TNF-binding protein (uTBP) on acute TNF-induced lesions and lethality was assessed in BALB/c mice. Two animal models, the local Shwartzman reaction and galactosamine (GaLN) induced TNF sensitization, were used. In the former, local cutaneous haemorrhagic necrosis induced by 10 micrograms of recombinant human TNF alpha (r-hTNF) was prevented with iv doses of uTPB as low as 1 microgram when administered concomitantly or 10 micrograms when injected intravenously 60 min before or 30 min after the lesion eliciting-dose of r-hTNF. In the latter model, injection of 1 microgram or r-hTNF caused the death of all mice within 36 h. Either 100 or 250 micrograms of uTBP given intravenously simultaneously with r-hTNF/GaLN totally prevented this mortality. In contrast to anti-human TNF monoclonal antibodies, these very same doses of uTBP significantly protected mice even when injected after the lethal r-hTNF dose. These data confirm in relevant in vivo pathological models the TNF inhibiting capacity of the natural soluble TNF receptor I.

Animals↗

Circulating plasma receptors for tumour necrosis factor in Malawian children with severe falciparum malaria.

Tumour necrosis factor (TNF) concentrations are increased in the plasma during a malarial illness, and are highest in patients with severe or fatal disease. We have studied the plasma concentrations of two soluble receptors (sTNF-R1 and sTNF-R2), which act as binding proteins for TNF, in children with falciparum malaria. In 52 Malawian children with malaria, plasma concentrations of both sTNF-R1 (mean (S.D.) 4759(2552) pg/ml) and sTNF-R2 (59077(37102) pg/ml) were greatly increased when compared with levels of convalescence (sTNF-R1 718(68), and sTNF-R2 8015(7021) pg/ml), and in controls without malaria (486(1353) and 4380(2168)). Concentrations of both receptors correlated with plasma levels of TNF measured by immunoradiometric assay, but not with those of another cytokine, IL-6. The mean plasma concentrations of both immunoreactive TNF and soluble TNF receptors were greater in patients with cerebral malaria than those with uncomplicated malaria. Despite high levels of immunoreactive TNF in the plasma of patients acutely ill with malaria, no bioactive TNF could be detected in these patients by the WEHI cell bioassay. Soluble TNF receptors are present in greatly increased concentrations in the plasma of patients with malaria and may play a role in mediating or modulating the pathogenetic effects of the cytokine.

Child↗

Soluble tumor necrosis factor receptor expression in patients with metastatic renal cell carcinoma treated with interleukin-2-based immunotherapy.

Two distinct types of soluble tumor necrosis factor alpha receptors (sTNFRs), which are felt to represent proteolytic cleavage products of the extracellular domains of membrane-bound TNFRs of molecular mass, 55 and 75 kDa, are found in the serum and urine of humans. We have measured the serum concentrations of these receptors in eight patients with metastatic renal cell carcinoma during treatment with interleukin-2 (IL-2)-based immunotherapy. The mean pretreatment concentration of sTNFR-55 kDa (p < 0.05) but not sTNFR-75 kDa was significantly elevated prior to the onset of immunotherapy. In one patient the concentrations of both sTNFRs decreased dramatically following removal of the primary tumor. There were significant increases in the concentrations of both sTNFRs in patients treated with IL-2-based therapy that included in vivo primed tumor infiltrating lymphocytes (pTILs); some of these patients eventually achieved a complete response to therapy. These data demonstrate that sTNFR-55 kDa is elevated in patients with metastatic renal cell carcinoma prior to therapy and that IL-2-based therapy that included pTIL cells results in a further increase in sTNFRs.

Carcinoma, Renal Cell↗

Soluble tumour necrosis factor receptors (sTNF-R) and HIV infection: correlation to CD8+ lymphocytes.

The objective of this study was to determine sTNF-R, type I (p55) and type II (p75) in sera of HIV-infected male homosexuals and correlate them to T lymphocyte subpopulations and course of HIV infection. Serum samples were obtained from 39 HIV-1+ asymptomatic male homosexuals, 10 symptomatic (ARC and AIDS) male homosexuals and 44 HIV- non-homosexual healthy controls. sTNF-R levels were determined by ELISA with specific MoAbs and polyclonal antibodies to the sTNF-R proteins. sTNF-RI and II levels were significantly elevated in 72% and 74% respectively of HIV+ asymptomatic male homosexuals and in all of the symptomatic male homosexuals. In sequential studies a highly significant positive correlation was found between sTNF-RI and sTNF-RII (r = 0.8, P < 0.001) and between both sTNF-R and CD8+ lymphocyte counts (r = 0.6 and 0.92, respectively, P < 0.01-0.001) during the asymptomatic stage of the infection. All these correlations were lost, however, during the symptomatic phase of the disease. These results suggest that: (i) HIV infection is associated with elevation of sTNF-R serum levels; (ii) sTNF-R levels are strongly correlated to CD8+ lymphocytes during the asymptomatic stage of HIV infection.

Adult↗

Extracellular matrix induces tumour necrosis factor-alpha secretion by an interaction between resting rat CD4+ T cells and macrophages.

T lymphocytes and macrophages (M phi) have been seen to accumulate at sites of lesions in blood vessel walls, suggesting that these cells may contribute to the pathogenesis of inflammatory reactions. Tumour necrosis factor-alpha (TNF-alpha), a cytokine produced by both M phi and T lymphocytes, plays a major role in inflammatory reactions, blood vessel formation, thrombosis and atherosclerosis. We now report that secretion of TNF-alpha by cloned CD4+ rat T cells, and to a lesser degree by peripheral T cells, and M phi can be induced in vitro in the absence of antigen, in a major histocompatibility complex (MHC) class II-independent manner by integrin-mediated recognition of immobilized components of extracellular matrix such as fibronectin and laminin; the secretion of TNF-alpha by the interacting resting cells on fibronectin was partially abrogated by the presence of the Arg-Gly-Asp (RGD)-containing amino acid sequence. This T cell-M phi interaction involves CD2 and CD4 molecules and requires a signal transduced in the T cells by a protein tyrosine kinase. Thus, a multicellular interaction with extracellular matrix protein exposed as a consequence of vascular wall injury can serve to signal the secretion of TNF-alpha which induces the recruitment of additional immune cells to the developing lesion.

Animals↗

Interrupted right-sided aortic arch.

Incomplete development of a right-sided interrupted aortic arch has not, to our knowledge, been recorded in the literature. We present a case of a 6-day-old neonate delivered at 37 weeks' gestation with an incomplete right-sided aortic arch. The anomaly was repaired with a 1-step surgical approach and the patient was discharged from the hospital. We propose a classification system for right-sided interrupted aortic arch based on that of the more common left-sided interruption.

Aorta, Thoracic↗

Selective decrease in cell surface expression and mRNA level of the 55-kDa tumor necrosis factor receptor during differentiation of HL-60 cells into macrophage-like but not granulocyte-like cells.

Expression of the two known receptors for TNF was studied in the promyelocytic leukemia cell line HL-60 before and after differentiation of the cells along the granulocyte lineage (induced by incubation with retinoic acid), or along the macrophage lineage (induced by incubation with the phorbol diester, PMA). The extent of inhibition of TNF binding by receptor-specific antisera, as well as the size of the complexes formed after cross-linking TNF to its receptors on intact cells, indicated that both receptor species were expressed on the surface of the undifferentiated HL60 cells. Differentiation into granulocyte-like cells resulted in some increase in TNF binding. The increase was apparently due to enhanced expression of the 75-kDa TNF-R, whereas the amounts of the 55-kDa TNF-R did not change significantly. In contrast, in HL-60 cells induced to differentiate into macrophage-like cells, expression of the 55-kDa TNF-R species was completely abolished. The pattern of TNF-R expression in the differentiated HL-60 cells was similar to that observed in leukocytes isolated from peripheral blood: on granulocytes, there were about equal amounts of both receptor species, whereas on monocytes the 75-kDa receptor was predominant. The loss of 55-kDa receptors during differentiation of HL-60 cells into macrophage-like cells was accompanied by a pronounced decrease in the level of the mRNA for that receptor, suggesting that at least part of the change in TNF-R expression is due to mechanisms that control the amounts of receptor mRNA. Although little is yet known regarding the functional differences between the two receptor species, marked changes in the pattern of their expression, as observed during HL-60 cell differentiation, are likely to alter the kind of response of the cells to TNF and may therefore play an important role in the coordination of TNF effects in the organism.

Cell Differentiation↗

Stabilization of the bioactivity of tumor necrosis factor by its soluble receptors.

The receptors for tumor necrosis factor (TNF) exist in cell-associated as well as soluble forms, both binding specifically to TNF. Since the soluble forms of TNF receptors (sTNF-Rs) can compete with the cell-associated TNF receptors for TNF, it was suggested that they function as inhibitors of TNF activity; at high concentrations, the sTNF-Rs indeed inhibit TNF effects. However, we report here that in the presence of low concentrations of the sTNF-Rs, effects of TNF whose induction depend on prolonged treatment with this cytokine are augmented, reflecting an attenuation by the sTNF-Rs of spontaneous TNF activity decay. Evidence that this stabilization of TNF activity by the sTNF-Rs follows from stabilization of TNF structure within the complexes that TNF forms with the sTNF-Rs is presented here, suggesting that the sTNF-Rs can affect TNF activity not only by interfering with its binding to cells but also by stabilizing its structure and preserving its activity, thus augmenting some of its effects.

Cell Count↗

Increased levels of soluble tumor necrosis factor receptors in the sera and synovial fluid of patients with rheumatic diseases.

OBJECTIVE: Recently, 2 classes of cytokine inhibitors have been defined at the molecular level. The largest group comprises the extracellular domains of cell surface cytokine receptors, and includes both tumor necrosis factor receptors (TNF-R). The present study was conducted to investigate the role of TNF inhibitors in arthritis. METHODS: We measured p55 and p75 soluble TNF-R (sTNF-R) in serum and synovial fluid (SF) samples from patients with rheumatic diseases and compared their levels with levels of soluble interleukin-2 receptors (sIL-2R). Sensitive enzyme-linked immunosorbent assays (ELISA), specific for p55 and p75 sTNF-R and for sIL-2R, were used. RESULTS: Serum levels of p75 sTNF-R were 3-4-fold higher than levels of p55 sTNF-R, and both were significantly elevated in patients with osteoarthritis (OA) and rheumatoid arthritis (RA) compared with healthy controls. RA SF levels of sTNF-R were 4-5-fold higher than levels in serum, suggesting local production in the joint, and were significantly higher than levels in the SF of patients with seronegative arthropathy or OA. Furthermore, levels of p55 and p75 sTNF-R, but not sIL-2R or TNF alpha measured by ELISA, were increased in the SF of patients with clinically active RA. The soluble TNF-R in RA and OA SF were functional since they inhibited TNF activity in a cytotoxicity assay in proportion to the levels of inhibitor present. Evaluation of serially obtained serum samples suggested that sTNF-R may be a useful parameter for monitoring RA disease activity. CONCLUSION: Biologically active soluble TNF-R are up-regulated in patients with rheumatic disease and are produced locally in the joints. Measurement of serum levels of TNF-R may be useful for monitoring of disease, and determination of SF levels could be of diagnostic value.

Adult↗

Cytoplasmic truncation of the p55 tumour necrosis factor (TNF) receptor abolishes signalling, but not induced shedding of the receptor.

The mechanistic relationship between the signalling for the TNF effects by the human p55 TNF receptor (hu-p55-TNF-R) and the formation of a soluble form of the receptor, which is inhibitory to these effects, was explored by examining the function of C-terminally truncated mutants of the receptor, expressed in rodent cells. The 'wild-type' receptor signalled for a cytocidal effect when cross-linked with specific antibodies and exhibited spontaneous shedding. Shedding of the receptor was not affected by TNF but was markedly enhanced by 4 beta-phorbol-12-myristate-13-acetate (PMA). Receptor mutants with 53%, 83% and 96% C-terminal deletions could not signal for the cytocidal effect. Furthermore, they were found to associate with the endogenous rodent receptors, interfering with their signalling. Yet even the deletion of 96% of the intracellular domain did not abolish shedding of the receptor in response to PMA. These findings suggest that signalling and shedding of the p55 TNF-R are mechanistically distinct.

3T3 Cells↗