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J Vilcek

Publications and source records attributed to J Vilcek.

At least 127 records · Page 7Linked to original sources

Three molecular weight forms of natural human interferon-gamma revealed by immunoprecipitation with monoclonal antibody.

Immune interferon (IFN-gamma), endogenously labeled with [35S]methionine, was produced in human peripheral blood lymphocyte cultures stimulated with 12-O-tetradecanoylphorbol-13-acetate and phytohemagglutinin. 35S-IFN-gamma, immunoprecipitated from the crude culture fluid with a monoclonal antibody, was resolved by sodium dodecyl sulfate-polyacrylamide gel electrophoresis into three monomeric forms with molecular weights of 25,000, 20,000, and 15,500, which we designate IFN-gamma I, II, and III, respectively. IFN-gamma I was the most, and IFN-gamma III the least, abundant in both immunoprecipitated 35S-IFN-gamma and chromatographically purified IFN-gamma preparations. Changes in the molecular size of the monomeric forms after glycosidase treatment suggested that IFN-gamma I contains more carbohydrate than IFN-gamma II, and that IFN-gamma III may not be glycosylated at all. Hence, the differences in the carbohydrate contents are likely to be the major cause of the molecular size heterogeneity of IFN-gamma I, II, and III.

Antibodies, Monoclonal↗

Interrelationships of human interferon-gamma with lymphotoxin and monocyte cytotoxin.

Crude preparations of interferon (IFN)-gamma derived from human peripheral blood leukocyte (PBL) cultures induced with 12-O-tetra-decanoylphorbol-13-acetate (TPA) and phytohemagglutinin (PHA) were more cytotoxic to HeLa cells than partially purified nautral or highly purified recombinant human IFN-gamma preparations. Conditioned media from PBL cultures contained, in addition to IFN-gamma, a mixture of cytotoxins, including classic lymphocyte-derived lymphotoxin (LT), and a TPA-induced cytotoxic activity produced by the adherent cell population (presumably monocytes). These two types of cytotoxins, indistinguishable in the mouse L929 cell LT assay, could be differentiated by an antiserum prepared against LT derived from the B lymphoblastoid cell line RPMI 1788. This antiserum neutralized lymphocyte-derived classic LT but failed to neutralize the activity of the monocyte-derived cytotoxin. Processing of conditioned media by sequential chromatography on silicic acid, Con A-Sepharose, and DEAE-Sephacel failed to separate IFN-gamma from the LT activity. However, this procedure did remove the monocyte-derived cytotoxic activity present in the original starting material, leaving predominantly classic LT. This LT showed a slightly basic isoelectric point (pI 7.6) which partially overlapped the more basic pI range of IFN-gamma. The two lymphokine activities also could not be completely separated by fast protein liquid chromatography or molecular sieve chromatography. LT in these partially purified preparations was associated with a protein having an apparent molecular weight of 58,000 on gel filtration. This form dissociated partially into a 20,000 mol wt species after denaturation with 0.1% NaDodSO4. IFN-gamma could be selectively removed from preparations containing both IFN-gamma and LT with the aid of monoclonal antibody to IFN-gamma. The addition of purified LT to purified E. coli-derived recombinant human IFN-gamma resulted in a marked synergistic enhancement of cytotoxicity for HeLa cells.

Antibodies, Monoclonal↗

Antibodies to chromosome 21 coded cell surface components block binding of human alpha interferon but not gamma interferon to human cells.

Antisera raised against a human X mouse hybrid cell line containing human chromosome 21 as its only human chromosome, block induction of an antiviral state by human alpha interferon (IFN-alpha), block induction of (2'-5')oligoisoadenylate synthetase [2'-5')A synthetase), and block binding of 125I-labeled and 35S-labeled recombinant, human IFN-alpha A, but not 125I-labeled IFN-gamma, to cell surface receptors. The data presented clearly demonstrate that the cell surface receptors for IFN-alpha and IFN-gamma are different, and provide independent evidence of the role of a chromosome 21 coded cell surface molecule in the pathway to the generation of the antiviral state.

2',5'-Oligoadenylate Synthetase↗

Use of monoclonal antibodies as sensitive and specific probes for biologically active human gamma-interferon.

Mouse monoclonal antibodies B1 and B3 are specific for natural and Escherichia coli-derived recombinant human gamma-interferon (IFN-gamma). The two antibodies recognize different epitopes of the IFN-gamma molecule and do not compete with each other's binding. We have used these two antibodies to construct a solid-phase, sandwich immunoradiometric assay for human IFN-gamma. Purified antibody B1 was coated on polystyrene beads (0.64 cm in diameter) and used as the solid-phase immunoadsorbent and antibody B3 was labeled with 125I and used as tracer. This assay can be completed in about 4 hr and is capable of detecting IFN-gamma levels in human serum or tissue culture fluids as low as 0.1 NIH reference unit/ml. Recombinant human IFN-gamma derived from E. coli was detectable at a concentration of 0.02 ng/ml. The assay appears to be specific for the biologically active forms of IFN-gamma, since after exposure to pH 2, 37 degrees C, or 56 degrees C, biological activity and reactivity in the immunoradiometric assay decreased in parallel. The immunoradiometric assay can be employed for the analysis of the structural characteristics of the human IFN-gamma molecule.

Animals↗

Natural and recombinant Escherichia coli-derived interferon-gamma differ in their reactivity with monoclonal antibody.

Monoclonal antibody GIF-1 was found to neutralize human natural immune interferon (IFN-gamma), but not Escherichia coli-derived recombinant IFN-gamma. In addition, GIF-1 antibody failed to immunoprecipitate 125I-labeled recombinant IFN-gamma, whereas it precipitated natural IFN-gamma in a concentration-dependent manner. The lack of recognition of recombinant IFN-gamma by antibody GIF-1 may not be due to the absence of the oligosaccharide moiety in the molecules of recombinant IFN-gamma alone, because removal of carbohydrate from natural IFN-gamma by treatment with a mixture of glycosidases did not alter the selective binding of antibody, i.e., deglycosylated and untreated natural IFN-gamma were equally neutralized and immunoprecipitated by GIF-1 antibody. In addition, a minor monomeric component of natural IFN-gamma with the m.w. of 15,500, which apparently lacks carbohydrate, was also recognized by antibody GIF-1. These results suggest that the discriminative recognition of natural and recombinant IFN-gamma by monoclonal antibody GIF-1 may be due to a conformational difference at or near the active regions of natural and recombinant human IFN-gamma molecules.

Animals↗

Ia-restricted interaction of normal lymphoid cells and SJL lymphoma (reticulum cell sarcoma) leading to lymphokine production. II. Rapid production of antibody-enhancing factor, interleukin 2, and immune interferon.

Mixed cell cultures of syngeneic lymph node (LN), spleen, or thymus and gamma-irradiated, syngeneic lymphoma cells of transplantable reticulum cell sarcomas (gamma-RCS) produced within 24 hours high titers of interleukin 2 (IL-2) and immune interferon in their supernatant (SN). These lymphokine titers were much higher than those seen after stimulation with allogeneic cells. SN also had marked enhancing activity for antibody production by anti-T-cell serum plus complement-treated spleen cells to trinitrophenylated polyacrylamide in vitro. This activity could be removed by absorption with cells of an IL-2-dependent cytotoxic cell line. Mixtures of gamma-RCS and LN cells from SJL/J F1 hybrid mice produced these lymphokines only when the non-SJL parent contributed H-2s or H-2b, but not H-2k or H-2d, in the I-region. These I-region restrictions were similar to those observed previously with respect to the ability of T-cells from SJL F1 hybrids to give proliferative responses to gamma-RCS in vitro and of these mice to support tumor growth in vivo. gamma-RCS also induced rapid interferon production in vivo, but serum titers 24 hours after injection consisted primarily of interferon resistant to pH 2 and neutralized by antibody to virally induced interferon (IFN-alpha/beta), and the production of IFN-alpha/beta was not subject to the same genetic restrictions. Although reticulum cell sarcoma cell extracts had no detectable effect in vitro, they were capable of inducing transient IFN production in vivo.

Animals↗

Ia-restricted interaction of normal lymphoid cells and SJL lymphoma (reticulum cell sarcoma) leading to lymphokine production. III. Relative roles of reticulum cell sarcoma and normal lymphoid cells in lymphokine production.

Production of interleukin 2 (IL-2) in mixed lymphocyte cultures of SJL/J lymph node (LN) and gamma-irradiated, syngeneic lymphoma cells of transplantable reticulum cell sarcoma (gamma-RCS) was abolished by pactamycin pretreatment of gamma-RCS. LN cells needed for this interaction were Lyt-2 T-cells, not adherent to Sephadex G-10. The effect of separation of T-cells and gamma-RCS after the first 24 hours of culture suggested that both components contributed to the IL-2 production. Exogenous IL-2, but not interleukin 1 (IL-1), restored the ability of pactamycin-treated gamma-RCS to induce syngeneic T-cell proliferation. The inability of T-cells from "nonresponder" F1 hybrids of SJL to proliferate to gamma-RCS was not corrected by addition of IL-1 or IL-2. Interferon (IFN) production also required the presence of untreated gamma-RCS and LN cells, but it was dependent on a Sephadex G-10 and plastic adherent cell in LN. IFN-free supernatant of LN cells plus gamma-RCS induced IFN production in fresh normal lymphoid cells, suggesting a possible indirect induction of this lymphokine. In addition, unirradiated RCS cells (la+ cells) produced immune IFN over a period of 3 weeks in vitro, after which the cells lost their viability. Prolonged IL-2 production was not observed in these cultures. The possible biological importance of the lymphokine production during the exaggerated syngeneic mixed lymphocyte reactions induced by RCS cells is discussed.

Animals↗

Plasmodium berghei sporozoites are mitogenic for murine T cells, induce interferon, and activate natural killer cells.

Enhanced natural killer (NK) activity was detected in the spleens of mice as early as 24 hr after single i.v. inoculation with gamma-irradiated Plasmodium berghei sporozoites. The activity peaked at 48 hr post-injection, and declined below baseline level by day 8. Reinoculation of mice with irradiated sporozoites produced an increased NK activity significantly smaller than the original activity. Spleen cells sensitized in vivo as well as nonsensitized spleen cells stimulated in vitro with sporozoites produced high levels of interferon (IFN) and displayed enhanced NK activity. Characterization of the IFN through the use of specific antibodies revealed that it was mainly IFN-gamma. The cellular basis for IFN-gamma induction was linked to the mitogenicity of P. berghei sporozoites for T cells. The possibility exists that IFN-gamma may have a regulatory effect on antibody production against P. berghei sporozoites.

Animals↗

Stimulation of lymphokine production by teleocidin, aplysiatoxin, and debromoaplysiatoxin.

Previous studies showed that the tumor-promoting phorbol ester 12-O-tetradecanoylphorbol 13-acetate (TPA) and several structurally related tumor-promoting compounds stimulate lymphocytes to produce immune interferon (IFN-gamma) and interleukin 2 (IL-2). This study shows that three compounds structurally unrelated to TPA, previously shown to mimic TPA in some other biological activities, are similar to TPA in stimulating IFN-gamma and Il-2 production in cultures of human peripheral blood lymphocytes. The production of another lymphokine, termed lymphotoxin (LT), was also enhanced by TPA and the other three compounds examined. Maximal enhancement of lymphokine production was observed in cultures costimulated with TPA or one of the other tested compounds and phytohemagglutinin (PHA). TPA was separated from IFN-gamma during a multistep purification procedure.

Alkaloids↗

Effects of glycosidase treatment on the physicochemical properties and biological activity of human interferon-gamma.

Highly purified human interferon (IFN)-gamma was treated with a preparation of mixed glycosidases in order to evaluate the effect of carbohydrate depletion on its biological activity, isoelectric point, and molecular size. Glycosidase treatment did not reduce the antiviral activity of IFN-gamma in cultures of human fibroblasts and in bat lung cells. No antiviral activity was observed before or after treatment with glycosidases in pig, mink, bovine, murine, and monkey cells. The degree of neutralization of IFN-gamma activity with specific antibody was also not significantly affected by glycosidase treatment. Several components of IFN-gamma activity were resolved by nonequilibrium pH gradient electrophoresis, with major peaks of activity at pI 8.5 and 8.7. Glycosidase treatment of IFN-gamma resulted in a reduced charge heterogeneity and a higher pI of 9.3. 125I-labeled IFN-gamma was resolved by sodium dodecyl sulfate-polyacrylamide gel electrophoresis into two bands with molecular weights of 25,000 and 20,000. Glycosidase treatment reduced the apparent molecular weight of these bands to 18,500 and 16,000, respectively. The results suggest that both the Mr = 25,000 and 20,000 bands, thought to be monomeric forms of IFN-gamma, are glycosylated.

Cell Line↗

Human interferon-gamma is internalized and degraded by cultured fibroblasts.

Human interferon-gamma (IFN-gamma) binds specifically and with high affinity to receptors on the surface of cultured fibroblasts (GM-258). At 37 degrees C about 50% of the receptor-bound IFN-gamma was rapidly internalized (t 1/2 = 4-5 min) by these cells. Following an initial lag of 15-30 min, internalized IFN-gamma was continuously degraded over a period of at least 8 h. The total uptake of IFN-gamma over this time period was found to exceed by 5 times the number of occupied IFN receptors present on the surface of these cells, suggesting that either there is a large intracellular pool of IFN-gamma receptors, or that receptors are recycled during the course of incubation. Cycloheximide (100 micrograms/ml) inhibited uptake only after the first 2 h of incubation and then only moderately. It is therefore unlikely that de novo receptor synthesis plays a major role in the observed uptake process. Both sodium azide (15 mM) and methylamine (20 mM) inhibited both the uptake and degradation of IFN-gamma at all times up to 6 h. While uptake was only slightly reduced in the presence of chloroquine (25 microM), degradation was markedly inhibited, suggesting that degradation occurs intracellularly, probably within lysosomes.

Azides↗

Purified human interleukin-2 enhances induction of immune interferon.

Interleukin-2 (IL-2), purified to apparent homogeneity, enhanced interferon (IFN) production in phytohemagglutin (PHA)-stimulated cultures of Ficoll-Hypaque-purified human mononuclear cells derived from plateletpheresis residues. Cells incubated with IL-2 in the absence of PHA did not produce detectable IFN. Neutralization with specific antisera and lack of activity in bovine cells indicated that the IFN produced in cells treated with IL-2 was IFN gamma. Addition of IL-2 to cultures stimulated IFN production in a dose-dependent fashion, with 100 U/ml of IL-2 generally producing optimal stimulation. There was considerable variability in the magnitude of the IFN response and the degree of its enhancement by IL-2 treatment in cells from different donors. However, an enhancement of IFN production after treatment with 100 U/ml of IL-2 was regularly observed in 11 experiments, with the increase ranging from 3- to 37-fold (mean 8.6-fold). The difference between IFN yields in control cultures and cultures treated with 100 U/ml of IL-2 was statistically significant (P less than 0.001). In contrast, 1000 U/ml of IL-2 strongly inhibited IFN induction by PHA. Treatment of cultures with IL-2 did not alter the kinetics of IFN production which peaked at 48-72 hr after PHA stimulation. When PHA was added only 24 to 96 hr after the establishment of cultures, rather than at the time of their seeding, both IFN production and endogenous IL-2 production were enhanced. The addition of exogenous IL-2 to such cultures caused only a modest further enhancement of IFN production. These data suggest that a threshold concentration of IL-2 (exogenously added or endogenously produced) is required for optimal IFN gamma production by human mononuclear cells.

Cells, Cultured↗

Renal deposition of alpha interferon in systemic lupus erythematosus.

Earlier studies from several laboratories showed that interferon-alpha (IFN-alpha) is present in the sera of a large percentage of patients with systemic lupus erythematosus (SLE). We now report the detection of IFN-alpha by indirect immunofluorescence in renal sections of three patients with SLE but not in six control kidneys. The immunofluorescence reaction was mediated by three hyperimmune antisera to IFN-alpha raised in three different species, but not by any preimmune serum. The reaction was specifically blocked by absorption of the anti-IFN-alpha sera with purified IFN-alpha made by recombinant DNA techniques or with IFN-alpha isolated from the serum of an SLE patient, but not by bovine serum albumin or human immunoglobulin G. In contrast, antisera to IFN-beta or IFN-gamma did not mediate immunofluorescence. The pattern of IFN-alpha deposition resembled that seen with anti-human immunoglobulin G, suggesting association with immune complexes. Immune complexes were then preparatively eluted from the homogenate of an SLE kidney by treatment with buffer at pH 2.8. Biologically active IFN was found in this eluate and was demonstrated to be IFN-alpha by specific neutralization with IFN antisera. These results extend the specific association of IFN-alpha with SLE.

Antigen-Antibody Complex↗

Lymphokine production by human T cell hybridomas.

Human T cell hybridomas were generated by hybridization of SH9 cells, the 6-thioguanine-resistant variant of human T lymphoma Hut102-B2, with concanavalin A-stimulated human peripheral blood lymphocytes. The hybrid nature of the established cell lines was documented by the difference in D14S1 restriction fragment length polymorphism between SH9 and the hybridoma cell DNA, and by the expression of OKT11 antigen on hybrid cells. T cell growth factor, macrophage growth factor (MGF), and interferon (IFN) activities have been demonstrated in the supernatants of different hybrid cultures, but not in SH9 cell cultures. Substantial quantities of MGF were secreted by several hybrids including the L23 line. MGF activity was dose-dependent, heat-labile, and synergistic with indomethacin. High titers of IFN activity were found in the cultures of hybridoma L415 and its subclones. Neutralization with specific antisera showed the IFN synthesized by L415 clones was immune interferon (IFN-gamma). Like the parental SH9 line, all of the hybridomas producing these lymphokines exhibited a cell surface phenotype typical for helper T cells. The hybridoma system therefore shows potential for the study of various lymphokines produced by human helper T lymphocytes.

Cell Line↗