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[Interferon type I in protective body reactions in an experimental Klebsiella infection].

The study on mice with experimental generalized Klebsiella infection, carried out with the use of microbiologic, immunologic and pathomorphologic methods, revealed that the intraperitoneal injection of type I interferon into the animals prevented their death and led to the rapid elimination of the infective agent from their body, enhanced the phagocytic and metabolic activity of polymorphonuclear lymphocytes of their peritoneal exudate, decreased the manifestation of microcirculatory and dystrophic changes in the parenchyma of their internal organs.

Animals

[Proteins induced by various types of double-stranded RNA and interferon type I in human fibroblasts. Correlation with antiviral activity of the substances].

Protein induction by new antiviral preparations of dsRNAs (larifan, ridostin, rifastin and poly(A).poly(U)) and recombinant beta-interferon in human fibroblasts (M19) was studied. The common gene products: 88, 80, 68, 58, 56, 52, 50 and 26 kD were detected in the spectra of the induced cytoplasmic polypeptides. At the same time the sets of the induced proteins had individual distinctions in various preparations. Induction of the 56-kD protein was more essential in the action of dsRNAs than that of interferon. The antiviral activity of dsRNAs and interferon preparations correlated with a relative increase in the synthesis of proteins with molecular weights of 88, 80 and 58 kD. The study results are in agreement with the fact that the dsRNAs have interferon-independent pathways of antiviral action with participation of 56- and 58-kD protein genes.

Antiviral Agents

Augmentation of cytotoxicity using combinations of interferons (types I and II), tumor necrosis factor-alpha, and tamoxifen in MCF-7 cells.

The cytotoxic effect of a combination of interferons (type I and II) and tumor necrosis factor (TNF), with an antiestrogenic drug, tamoxifen (TAM), was investigated in the estrogen receptor positive human breast carcinoma cell line, MCF-7. Cytotoxicity was measured by the MTT assay. In an attempt to define the molecular basis for the interaction between the interferons (IFNs) and TNF or any one of the cytokines with TAM, the induction characteristics of a number of IFN-induced mRNAs in response to IFNs, TNF, and TAM were studied. We observed an augmentation of the cytotoxic effect of TNF when it was combined with TAM. There appears to be an overlap in signalling mechanisms of IFNs and TNF as two of the IFN-inducible genes, 1-8 and 6-16 are also induced by TNF. mRNA 1-8 was induced by both IFN-alpha (type I) and IFN-gamma (type II). We conclude that TNF potentiates the cytotoxic effects of TAM in MCF-7 cells and that the three cytokines IFN-alpha, IFN-gamma, and TNF share some pathways that lead to specific induction of some cytokine responsive genes.

Antineoplastic Combined Chemotherapy Protocols

[Effect of double-stranded RNA and interferon type I on reproduction of cytomegalovirus in human fibroblasts].

Double-stranded RNAs (dsRNA) - larifan and ridostin, and recombinant interferons-alpha-2 and beta-1, manufactured in the USSR, inhibited the reproduction of CMV in cell culture. Antiviral effect depended on concentration of preparations, time of administration and m. o. i. DEAE-dextran enhances antiviral effect dsRNA. DsRNA and interferons added to cells infected with CMV at high m. o. i. enhance the viral reproduction. Among studied preparations highest antiviral effect was shown by natural leucocyte interferon (Egis). It was 10 times more active, than recombinant IFNs and in concentration of 1000 U/ml was comparable to activity of larifan (200 mg/ml).

Antiviral Agents

[Phosphorylation of proteins in cytoplasmic and nuclear fractions of human cells treated with double-helical RNA and human recombinant interferon type I].

The dynamics of protein kinases activity in nuclear and cytoplasmic fractions of human fibroblasts treated by preparations of natural and synthetic dsRNA (ridostin, rifastin, larifan and poly(I).poly(C), DEAE-dextran and dsRNA complexes with DEAE-dextran), as well as by preparations of recombinant alpha-2 and beta-1 interferons was obtained. The early activation of enzymes in treated cells extracts and their presence in dsRNA-activated and nonactivated forms were found. In cytoplasmic cellular fractions treated by interferons the dsRNA dependent protein kinases (nonactivated forms- were prevalent.r In contrast, in dsRNA treated cells or dsRNA complexes with DEAE-dextran treated ones the dsRNA independent protein kinases (activated forms) were found, while dsRNA dependent forms induced by interferons were found at later periods. Nuclear protein kinases are mainly dsRNA independent making possible the supposition of their intracellular activation by incoming dsRNA or interferon-induced formation of ds-structures in cellular nuclei. In phosphorylated proteins spectre the 90, 69, 45-40 and 30-35 kDa polypeptides were found. At early intervals in nuclear fractions was found a nuclease resistant and partially EDTA resistant high molecular phosphorylated complex (120 kDa). The complex is, probably, capable of dissociation to low mol mass components. DEAE-dextran induces strong activation of protein kinases in cytoplasm and nuclei and increases the content of activated forms of enzyme in larifan treated cells.

Cell Nucleus

[Monoclonal antibodies to natural human gamma-type interferon].

Nine hybridomas producing monoclonal antibodies (MCA) to natural human gamma interferon (IF-gamma) were generated. BALB/c mice were immunized with nonpurified IF-gamma preparation synthesized by lymphoid cells of the peripheral blood of donors in response to induction with staphylococcal enterotoxin A. For the first time somatic hybridization was done with the use of a medium with a high content of HEPES which maintained hybridomas viable for a long period of time. Out of 9 hybridomas, two (-gamma 6.1 and gamma-8.1) were shown to produce MCA with a high binding activity in the enzyme immunoassay. The same MCA effectively neutralized the biological activity of natural IF-gamma.

Animals

Immune-type interferon-induced transfer of viral resistance.

Mouse immune-type interferon (type II), a lymphokine, caused the transfer of viral resistance from mouse L cells to human WISH cells. The interferon was incapable of protecting WISH cells in the absence of L cells. The transfer of viral resistance occurred with interferon preparations of various specific activities, and was in proportion to the interferon concentration in the preparations. The transferred resistance had the characteristics of an interferon-induced antiviral state in that it was blocked by actinomycin D, effective against different types of viruses, and resulted from an action on the cell rather than on the virus. Mouse immune-type interferon was more efficient than virus-type (type I) at eliciting the transfer of protection. The transfer phenomenon may represent a mechanism for amplification of the interferon system as a host defense against viral infection. Further, it serves as a model for studying the mechanism of lymphokine-induced transfer of information between cells.

Animals

In vitro production and cellular origin of murine type II interferon.

Antigen-specific type II interferon was produced in vitro by harvesting supernatants of spleen cell cultures from Swiss-Webster mice sensitized with Mycobacterium bovis strain BCG and challenged with old tuberculin. Treatment of C3H mouse spleen cell cultures with appropriate anti-Ia, anti-IgG, anti-Thy-1 or anti-Ly-2,3 sera resulted in a significant decrease in production of type II interferon. Removal of nylon wool adherent cells or cells with histamine receptors by column chromatography similarly caused reduced production of type II interferon. Recombination of spleen cell cultures treated with anti-Ia and anti-Thy-1 sera or of cells treated with anti-IgG and anti-Thy-1 resulted in restored production of type II interferon. Interferon production was also restored by combination of cells passed through histamine columns with anti-Ia treated cells, or those passed through nylon wool columns with anti-Thy-1 treated cells. Anti-Ly-1 serum treatment had no effect on interferon production. Removal of plastic-adherent cells or cells that had phagocytosed carbonyl iron also decreased interferon production, suggesting that macrophages were also involved in type II interferon production. Recombination of non-adherent spleen cells with anti-Ia and anti-Thy-1 sera treated spleen cells, however, did not restore interferon production, suggesting that other cells in addition to macrophages are depleted by the adherence procedure. These findings indicate that type II interferon is produced by suppressor or cytotoxic (Ly-2,3+) T lymphocytes in co-operation with one or two additional cell types: (i) B lymphocytes, and (ii) macrophages.

Animals

Dissection of the interferon gamma-MHC class II signal transduction pathway reveals that type I and type II interferon systems share common signalling component(s).

We have used a herpes virus thymidine kinase (HSV-TK) based metabolic selection system to isolate mutants defective in the interferon gamma mediated induction of the MHC class II promoter. All the mutations act in trans and result in no detectable induction of MHC and invariant chain (Ii) gene expression. Scatchard analysis indicates that the mutants have a normal number of surface IFN gamma receptors with the same affinity constant. The mutants fall into two broad categories. One class of mutants is still able to induce MHC class I, IRF-1, 9-27, 1-8 and GBP genes by IFN gamma. A second class of mutants is defective for the IFN gamma induction of all the genes tested; surprisingly, the IFN alpha/beta induction of MHC class I, 9-27, ISG54 and ISG15 genes is also defective in these mutants, although different members of this class can be discriminated by the response of the GBP and IRF-1 genes to type I interferons. These data demonstrate that the signalling pathways of both type I and type II interferon systems share common signal transduction component(s). These mutants will be useful for the study of IFN gamma regulation of class II genes and Ii chain, and to elucidate molecular components of type I and type II interferon signal transduction.

Base Sequence

Regulation of gene expression by cytokines and virus in human cells lacking the type-I interferon locus.

A number of genes that are induced by type-I interferons are also activated by one or more other inducers, including double-stranded RNA, viruses, interferon-gamma, interleukin-1 and tumor necrosis factor. However, these inducers can also activate the expression of type-I interferons. Thus, the activation of type-I interferon-inducible genes by these other inducers could be direct, or a secondary consequence of the induction of interferon. To distinguish between these possibilities, we have used cell lines lacking all type-I interferon genes to study the direct effect of potential inducers on the expression of 14 interferon-inducible human genes. We show that double-stranded RNA, virus, interferon-gamma or tumor necrosis factor-alpha can act directly to induce specific subsets of type-I interferon-inducible genes in the absence of any possible type-I interferon involvement. The cis-acting element which confers inducibility by type-I interferon has been shown in some cases to confer inducibility by interferon-gamma, double-stranded RNA or virus as well. However, not all promoters containing such an element respond to both interferon and other inducers. Thus, the ability of a given gene to respond to different inducers most likely depends on the exact nature and specific combination of cis-acting elements present in its promoter.

Animals

Bovine type II interferon: activity in heterologous cells.

The antiviral and cell growth inhibition spectra of bovine and human interferons are described. The antiviral activity of type II interferon in heterologous cells far exceeded that of the corresponding type I interferon. Antiviral activity of bovine type II interferon parallels cell growth inhibition activity both in thermal inactivation kinetics as well as in the rate of synthesis. Furthermore, the spectrum of antiviral activity against heterologous cells was the same as that seen for cell growth inhibition suggesting that one molecule may mediate both effects. The therapeutic implications of type II interferon prepared in animals for use in human medicine are discussed briefly.

Animals

Type I interferon induced in mice by infection with Trypanosoma equiperdum.

Type II interferon is known to be produced in mice infected with Trypanosoma cruzi. Therefore, interferon production was investigated in mice infected with Trypanosoma equiperdum. Interferon was found in the sera of mice infected with T. equiperdum from day 1 after infection until death on day 5. The maximal level of interferon appeared before parasitemia was detected, a finding showing that the endogenous interferon probably had no significant influence on the course of infection. Unexpectedly, the serum interferon was characterized as type I by its stability at pH 2 and by its neutralization by antiserum to virus-induced mouse interferon. The production of two different types of interferon in mice infected with T. cruzi and T. equiperdum may have been due to the dissimilar life cycles of the two trypanosomes in the white mouse.

Animals

Affinity-matured B cell responses neutralizing type-I interferons underlie severe viral infections.

Autoantibodies neutralizing type-I interferons (AAN-I-IFNs) emerge as global, common, and strong determinants of a growing number of severe viral diseases. We report that AAN-I-IFNs+ patients with life-threatening COVID-19 pneumonia harbor circulating type-I IFN-specific B cells indistinguishable from patients bearing T cell tolerance defects of genetic origin. This autoimmune response mobilizes a highly diverse and stable circulating B cell response that is detected prior to severe viral infection and acquires high affinity and neutralization potential to type-I IFNs through extended somatic hypermutation. X-ray crystallography and AlphaFold3 structural analysis of hundreds of patient-derived monoclonal antibodies reveals the extended breadth of this response, targeting three major B cell epitopes covering all facets of type-I IFNs. These findings support a model in which a germinal-center-derived memory B cell response directed against type-I IFNs is established before severe viral infection, providing a core mechanism linking T cell tolerance defect to pathogenic AAN-I-IFNs underlying severe viral diseases.

Humans

Type I Interferon Signature is Associated With Lung Disease, Drug-Associated Immune Reactions, and Genetic Variation in Interferon-Linked Pathways in Still Disease.

OBJECTIVE: To evaluate the relationship across type I interferon (IFN-I)-stimulated gene (ISG) expression, Still disease, and the development of lung disease (LD) and drug-associated immune reactions (DAIR) to interleukin-1 (IL-1) and/or IL-6 inhibitors. METHODS: Whole blood ISG expression was quantified by NanoString array. ISG-28 scores were calculated in consecutive patients with Still or Still-like disease. Exome sequencing with family-based variant prioritization identified candidate genes harboring rare candidate causative variants. Lists of candidate genes were subjected to functional enrichment analysis. RESULTS: Among 57 patients (32 children, 25 adults), 16 had elevated ISG-28 scores. This group exhibited higher prevalence of LD (0.44 vs 0.1, P = 0.007) and DAIR (0.63 vs 0.17, P = 0.003) and lower IL-6 inhibitor use (0 vs 0.25, P = 0.048) compared to others. No significant differences were found in the rates of macrophage activation syndrome, active disease, elevated IL-18, or current IL-1 inhibition. The combination of HLA-DRB1*15 with high ISG-28 scores is associated with LD and DAIR with high specificity, whereas absence of both biomarkers had high negative predictive value. Candidate genes from high ISG-28 individuals were enriched in IFN-related pathways, including autophagy, IFN-I production, toll-like receptor signaling, macrophage activation, cytoskeletal organization, and responses to stress. CONCLUSION: High IFN-I expression correlates with LD and DAIR in Still disease, linked to rare genetic variation in immune pathways. Combining high ISG-28 with HLA-DRB1*15 significantly improves post hoc stratification of patients for these complications. If prospectively validated, these findings may guide molecular risk assessment and targeted therapies, including IFN-I directed treatments in Still disease with IFN-I signature.

Humans

Type I interferon resistance in a colorectal cancer cell line is associated with a more aggressive phenotype in vivo.

A type I interferon resistant variant (beta-MIP101) of the poorly differentiated human colon cancer cell MIP101 has a more aggressive phenotype in vivo in the nude mouse. Subcutaneous tumours grew at twice the rate of MIP101, but with similar morphology. beta-MIP101 also produced liver metastases at a higher frequency. beta-MIP101 tumours were diploid while MIP101 tumours were aneuploid. Both cell lines had doubling times of approximately 25 h in vitro.

Animals