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Inhibition of alpha interferon but not gamma interferon signal transduction by phorbol esters is mediated by a tyrosine phosphatase.

Previous studies have indicated that the expression of viral oncoproteins, cell transformation, or phorbol ester treatment of cells can inhibit alpha/beta interferon (IFN-alpha/beta)-induced gene expression. The mechanisms by which these promoters of cell growth exert their inhibitory effects vary, but in most instances they involve a disruption of the IFN-alpha/beta-induced transcription complex ISGF3 such that the DNA-binding component of this complex (the 48-kDa ISGF3gamma protein) does not bind to the interferon-stimulated response element (ISRE). In this report, we demonstrated that phorbol ester treatment of human peripheral blood monocytes dramatically inhibits activation of IFN-alpha/B-stimulated early response genes but by a mechanism which does not involve abrogation of the ISRE binding of ISGF3gamma. Phorbol ester treatment of monocytes inhibited IFN alpha-stimulated tyrosine phosphorylation of the transcription factors Stat1alpha, Stat2, and Stat3 and of the tyrosine kinase Tyk2 but had no effect on IFN-gamma activation of Stat1alpha. IFNalpha-stimulated tyrosine phosphorylation of Jak1 and the alpha subunit of the IFN-alpha receptor were unaffected by phorbol 12-myristate 13-acetate (PMA). Moreover, PMA caused the dephosphorylation of Tyk2 but not of Jak1, which was activated by IFN. Pretreatment of cells with vanadate prevented the effects of PMA with regard to PMA-induced Tyk2 dephosphorylation. These observations suggest that PMA exerts its inhibitory effects by activation of a tyrosine phosphatase which selectively regulates Tyk2 but not Jak1 activity.

Base Sequence↗

Interferon and murine leukemia. VII. Therapeutic effect of interferon preparations after diagnosis of lymphoma in AKR mice.

Daily administration of potent mouse interferon preparations, begun after clinical diagnosis of lymphoma in AKR mice, increased average survival by approximately 100%. Interferon treatment delayed the evolution of the lymphoma but regression of tumour was not observed. The therapeutic effects observed with interferon in AKR mice compare favorably with reported results obtained using standard anti-cancer drugs.

Animals↗

Interferon fever: absence of human leukocytic pyrogen response to recombinant alpha-interferon.

A sensitive in vitro assay for generation of human leukocytic pyrogen has been used to study the pathogenesis of fever accompanying administration of human alpha-interferon. Unlike other potent pyrogens, two recombinant interferon preparations tested over a wide concentration range did not stimulate release of leukocytic pyrogen. This result suggests that interferon may cause fever by a novel mechanism not dependent on leukocytic pyrogen.

Animals↗

Analysis of interferon-regulated proteins binding the interferon-alpha-stimulated response element.

Interferon mediates its biological effects of antiviral, antiproliferative, and immunomodulatory activities through induction of specific gene expression. Transcription of target genes is regulated through a set of transcription factors that bind to specific cis-acting regulatory sequences in target promoters and enhancers. The activity or abundance of these transcription factors is modulated by interferon treatment. Because of their DNA binding activity, regulatory factors can be recognized and characterized using methods to detect protein-DNA complexes. The availability of antibodies directed against common interferon regulatory proteins coupled with analysis of binding-site specificity provides comprehensive analysis.

Base Sequence↗

Vaccinia virus E3L interferon resistance protein inhibits the interferon-induced adenosine deaminase A-to-I editing activity.

The RNA-specific adenosine deaminase (ADAR1) is an interferon-inducible editing enzyme that converts adenosine to inosine. ADAR1 contains three distinct domains: a N-terminal Z-DNA binding domain that includes two Z-DNA binding motifs; a central double-stranded RNA binding domain that includes three dsRNA binding motifs (dsRBM); and a C-terminal catalytic domain responsible for A-to-I enzymatic activity. The E3L protein of vaccinia virus mediates interferon resistance. E3L, similar to ADAR1, also contains Z-DNA binding and dsRNA binding motifs. To assess the possible role of E3L in modulating RNA editing by ADAR1, we examined the effect of E3L on ADAR1 deaminase activity. Wild-type E3L protein was a potent inhibitor of ADAR1 deaminase enzymatic activity. Analysis of mutant E3L proteins indicated that the carboxy-proximal dsRBM of E3L was essential for antagonism of ADAR1. Surprisingly, disruption of the Z-DNA binding domain of E3L by double substitutions of two highly conserved residues also abolished its antagonistic activity, whereas deletion of the entire Z domain had little effect on the inhibition. With natural neurotransmitter pre-mRNA substrates, E3L weakly inhibited the site-selective editing activity by ADAR1 at the R/G site of the glutamate receptor B subunit (GluR-B) pre-mRNA and the A site of serotonin 2C receptor (5-HT2CR) pre-mRNA; editing of the intronic hotspot (+)60 site of GluR-B was not affected by E3L. These results demonstrate that the A-to-I RNA editing activity of the IFN-inducible adenosine deaminase is impaired by the product of the vaccinia virus E3L interferon resistance gene.

Adenosine↗

Interferon assay anomaly variation of interferon response with cell type and sialic acid content.

Human interferon derived from leukocytes and cultured fibroblast sources has been compared by assay in two human cell systems. The ratio of the activities of the two interferon preparations differed markedly in two assay systems. Neuraminidase treatment had no effect on the activity of either interferon in the more sensitive system but reduced the activity of the fibroblast material in the second system so that the resulting ratio of activities approximated that seen in the first assay system.

Cells, Cultured↗

Induction of interferon by virus glycoprotein(s) in lymphoid cells through interaction with the cellular receptors via lectin-like action: an alternative interferon induction mechanism.

When animals and cells are infected with a virus, interferon is produced. Viral-nucleic acid is considered to be one of actual components for interferon induction. In addition, viral glycoproteins trigger interferon induction in lymphoid cells by membrane-membrane interaction via a lectin-like activity. A biological significance of lectin-like activity of viral glycoproteins is discussed.

Animals↗

Interferon-induced early changes in nuclear protein interactions with the interferon consensus sequence.

A number of genes are transcriptionally regulated by interferons via a cis acting regulatory element (interferon consensus sequence). After incubation with HeLa cell nuclear extracts, a synthetic 29 mers probe representing the consensus was retarded as a single band whose amount increased after the addition of IFN to the cells. DNase I footprinting showed that a region of the non coding strand was protected differentially upon interferon treatment. After nuclear protein blotting and probing with the oligonucleotide, two proteins (114 and 50 kDa) of the desired specificity were revealed. Their absolute and relative amounts do not appear to be dependent of the IFN treatment.

Cell Nucleus↗

Natural resistance in mice against Friend leukemia cells. I. Studies with in vitro passaged interferon-sensitive and interferon-resistant cell clones.

Anti-lymphoma natural resistance (NR) has been detected in DBA/2 mice inoculated intravenously (iv) with syngeneic Friend leukemia cells (FLC). Interferon-sensitive 745 or interferon-resistant 3Cl-8 clones, passaged in vitro and exhibiting "low" tumorigenicity in syngeneic DBA/2 mice, were used. NR, measured as rapid clearance of radiolabeled cells from lung and liver of recipient mice, was age-dependent, was boosted by host pretreatment with polyinosinic-polycytidylic (poly I:C) acid or Friend leukemia virus, and was decreased by mice pretreatment with cyclophosphamide or i-carrageenan. Treatment of "target" FLC with interferon suppressed the susceptibility of 745 FLC, but not that of 3Cl-8 FLC to host's NR. These data suggest that the "low" in vivo tumorigenicity of in vitro passaged FLC is, at least in part, due to host's NR directed against target structures associated with leukemia cells.

Aging↗

Adenovirus VAI RNA antagonizes the antiviral action of interferon by preventing activation of the interferon-induced eIF-2 alpha kinase.

The VAI RNA of adenovirus is a small, RNA polymerase III-transcribed species required for efficient translation of host cell and viral mRNAs late after infection. The growth of a viral mutant that is unable to produce the RNA is inhibited by interferon, while wild-type virus is not affected. VAI RNA prevents activation of the interferon-induced P1/eIF-2 alpha kinase. This inhibition can be reproduced in extracts of interferon-treated cells where purified VAI RNA prevents activation of latent kinase by double-stranded RNA.

Adenoviruses, Human↗

The cellular internalization of recombinant gamma interferon differs from that of natural interferon gamma.

Purified natural and recombinant murine gamma interferons (MuIFN-gamma) bind at 4 degrees C to cultured L929 mouse fibroblasts with comparable receptor-binding affinity (Kd = 9 x 10(-10) M). Both 125I-labeled MuIFNs are rapidly internalized by cells at 37 degrees C, although recombinant IFN is internalized somewhat more slowly than natural IFN (t1/2 = 90 sec and 45 sec, respectively). Immunoelectronmicroscopy showed that the majority of bound recombinant MuIFN-gamma was located on the plasma membrane outside of coated areas, whereas natural interferon was found mainly in coated pits. At 37 degrees C most of the recombinant molecules entered the cytoplasm in pinocytotic vesicles, while natural interferon was internalized by the specific mechanism of receptor-mediated endocytosis [1]. However, nearly equal amounts of immunocytochemically detectable molecules of both IFNs were found in the cell nucleus within 2-3 min incubation at 37 degrees C. Thus, the process of translocation of the recombinant IFN-gamma appears to differ from that of the natural product.

Animals↗

Interferon alpha/beta-mediated inhibition and promotion of interferon gamma: STAT1 resolves a paradox.

Induction of high systemic levels of type 1 interferons (IFNs) IFN-alpha and IFN-beta is a hallmark of many viral infections. In addition to their potent antiviral effects, these cytokines mediate a number of immunoregulatory functions and can promote IFN-gamma expression in T cells. However, during viral infections of mice IFN-gamma production is not always observed at the same time as systemic IFN-alpha/beta production and when, elicited at these times, is IFN-alpha/beta-independent. We demonstrate that type 1 interferons not only fail to induce, but also act to inhibit, IFN-gamma expression by both NK and T cells. The mechanism of inhibition is dependent upon the IFN-alpha/beta receptor and the signal transducer and activator of transcription 1 (STAT1). In the absence of STAT1, not only are the IFN-alpha/beta-mediated inhibitory effects completely abrogated, but the cytokines themselves can induce IFN-gamma expression. These results indicate that endogenous biochemical pathways are in place to negatively regulate NK and T cell IFN-gamma expression elicited by IFN-alpha/beta or other stimuli, at times of innate responses to viral infections. They also show that type 1 interferon signaling can occur through STAT1-dependent and independent mechanisms and suggest that efficient induction of IFN-gamma expression by IFN-alpha/beta requires STAT1 regulation. Such immunoregulatory pathways may be critical for shaping the endogenous innate and virus-specific adaptive immune responses to viral infections.

Animals↗

Glycolipid modification of alpha 2 interferon binding. Sequence similarity between the alpha 2 interferon receptor and verotoxin (Shiga-like toxin) B-subunit.

Previous studies have implicated the glycolipid receptor for the Escherichia coli-derived verotoxin, globotriaosylceramide (Gb3; Gal alpha 1-4Gal beta 1-4Glc-ceramide), in the mechanism of alpha 2 interferon signal transduction. Comparison of the amino acid sequence of the human alpha 2 interferon receptor with that of the B (receptor-binding)-subunit of verotoxin shows three regions of similarity which may provide a structural basis for alpha 2-interferon-receptor/Gb3 interaction.

Amino Acid Sequence↗

Interferon and cell division. I. Inhibition of the multiplication of mouse leukemia L 1210 cells in vitro by interferon preparations.

Mouse interferon preparations inhibited the multiplication of mouse leukemia L 1210 cells in stationary suspension cultures. The degree of inhibition was found to correlate with the antiviral titer of the interferon preparations. The factor(s) responsible for inhibition of L 1210 cell multiplication could not be dissociated from interferon by standard physicochemical means.

Animals↗

Synthesis of human interferon by Xenopus laevis oocytes: two structural genes for interferons in human cells.

Human fibroblasts and leukocytes produce interferons which may be distinguished by their antigenic and species specificity as well as by their molecular weight distributions. To elucidate the basis for these differences, we isolated mRNA from induced human fibroblasts and lymphoblastoid (Namalva) cells and studied the products of translation in Xenopus laevis oocytes. The mRNA from the respective cells yielded translation products, in oocytes, that were characteristic of the cells from which the mRNA was derived. We conclude that human cells contain at least two structural genes for interferon, coding for polypeptides differing in primary sequence. Fibroblasts synthesize a single species of interferon; lymphoblastoid cells synthesize two species, the fibroblast and leukocyte types.

Animals↗

Anti-beta-interferon antibodies inhibit the increased expression of HLA-B7 mRNA in tumor necrosis factor-treated human fibroblasts: structural studies of the beta 2 interferon involved.

Recombinant Escherichia coli-derived human tumor necrosis factor (TNF) induces the 1.3-kilobase beta 2 interferon (IFN-beta 2) mRNA in human diploid fibroblasts (FS-4 strain). IFN-beta 2 is serologically related to the well-characterized IFN-beta 1 (respective antisera cross-neutralize the heterologous protein). Polyclonal and monoclonal anti-IFN-beta antibodies inhibit the increase in class I HLA gene expression (HLA-B7 mRNA) in TNF-treated FS-4 cells suggesting that TNF-induced IFN-beta 2 mediates the enhancing effect of TNF on HLA gene expression in human fibroblasts. The structure of this autocrine human interferon has been determined. A cDNA library was prepared from polyadenylylated RNA extracted from TNF-induced FS-4 cells, and eight IFN-beta 2 cDNA clones were isolated using a 21-nucleotide synthetic oligonucleotide probe. The 1128-nucleotide sequence of IFN-beta 2 mRNA and the 212-amino acid sequence of the IFN-beta 2 protein were deduced from these cDNA clones. The amino acid sequences of the serologically related human IFN-beta 1 and -beta 2 were compared using the Sellers TT metric algorithm for locating similarities and using the pattern scoring method for evaluating the observed similarities. IFN-beta 1 and -beta 2 each contain a segment that is approximately 100 amino acids including 39 amino acids that are aligned and identical in the two proteins. The hydropathic index plots across these segments in the two proteins are also strikingly similar. The region of similarity between IFN-beta 1 and -beta 2 includes a section that is also highly conserved in all IFN-alpha species sequenced. Thus IFN-beta 2 shares structural similarities with other human interferons that also preferentially increase class I HLA gene expression.

Amino Acid Sequence↗

The interferon compartment of the immune response in human malaria: II. Presence of serum-interferon gamma following the acute attack.

The present study concerns the monitoring of serum-interferon (serum-IFN) levels among 189 patients followed after and sometimes during an acute episode of malaria due mainly to Plasmodium falciparum (P. falciparum). Of these patients, 110 known to have no other parasitic or infectious disease were followed in France; 79 were from Thailand, among which 25 cases of neuromalaria were diagnosed. In a first four-month survey conducted in France, among 100 patients seen after the acute attack, serum-IFN-gamma was characterized among 87% cases for which at least two sera were controlled, whereas in a healthy population no serum-IFN was present. When efforts were concentrated on screening ten cases during the first 48 h of the febrile attack, serum-IFN-alpha was mainly characterized, whereas serum-IFN-gamma was present only once. Elevated leukocyte 2',5' oligoadenylate synthetase levels were found among several IFN-alpha positive patients of this study group. A peculiarity pertaining to the patients from Thailand was that one-third (25 cases) were cerebral malaria cases. Among these, 15 were followed under hospitalization during the first 96 h. In this study group, the onset of circulating immune interferon was found to be preceded or accompanied by that of IFN-alpha. Thus, if serum-IFN-gamma is largely characterized among malaria patients followed after the acute attack, it is possible that the onset of circulating immune interferon is generally preceded by that of IFN-alpha.

2',5'-Oligoadenylate Synthetase↗

An inhibitor of interferon action: I. Physical association of the inhibitor with interferon-gamma.

Previously, an inhibitor of interferon action has been identified in mouse lymphokine preparations. The inhibitor was produced following IFN-gamma production and thus may be involved in regulation of IFN-gamma action. We now show that native inhibitor activity as isolated from crude and partially purified IFN-gamma preparations migrates along with interferon activity on molecular sieving gels. IFN-gamma which comigrates with inhibitor migrates at a slightly higher molecular weight than IFN-gamma free of inhibitor. This inhibitor activity correlates with the decreased antiviral activity of crude IFN-gamma produced late in the course of mitogen stimulation. This is apparent for both plaque reduction and yield reduction assays for interferon. This association of IFN-gamma with its inhibitor suggests a mechanism for the local regulation of IFN-gamma activity.

Animals↗