Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “INTERFERON”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,027 records · Page 57Linked to original sources

Studies on interferon induction and interferon sensitivity of avian reoviruses.

Four strains of avian reovirus were ineffective inducers of interferon (IFN) in chicken kidney (CK) cell cultures. All strains were similar in single-cycle replication curves. At multiplicities of infection between 0.20 and 10 plaque-forming units per cell, IFN was not induced in CK cells. Reovirus did not produce an IFN blocker in CK cells. Attenuated reovirus did induce IFN in aged chicken embryo fibroblast (CEF) cell cultures. By priming cells with a low dose of IFN before infection with reovirus, IFN formation by CEF could be enhanced. Ultraviolet-inactivated avian reovirus was an effective inducer of IFN in both CK and CEK cell cultures. The sensitivity of avian reoviruses (Fahey-Crawley, Reo-25, S-1133, Reo-V) to chicken interferon (Ch-IFN) was studied by the plaque-reduction method. Avian reoviruses were less sensitive to Ch-IFN than was vesicular stomatitis virus or Semliki Forest virus and appeared to be as resistant to IFN as was Newcastle disease virus.

Animals↗

Systemic administration of human leukocyte interferon to melanoma patients. III. Increased helper:suppressor cell ratios in melanoma patients during interferon treatment.

Malignant melanoma patients treated with human leukocyte interferon (IFN-alpha) displayed increased natural killer (NK) cytotoxicity to K562 targets within the first 2 weeks of therapy. This study explored the possibility of T-cell regulation of this NK response, as evidenced by a variation in T-cell subpopulations. T-cell subset levels were studied in 9 patients who received daily doses of IFN-alpha over a period of 42 days. Five monoclonal antibodies to T-cell surface markers were used: Leu 1 (pan-T), Leu 2a (T suppressor/cytotoxic), Leu 3a (T helper/inducer), HNK-1 (Leu 7, a marker for NK cells), and B73.1 (an antibody against the Fc receptor on NK/K cells). Percentages of these markers were measured on days 0, 3, 7, and 21 of treatment. Percentages of Leu 1-positive cells and Fc-receptor-positive cells remained relatively constant throughout treatment in all patients. A trend toward a decrease in suppressor cells and an increase in helper cells peaking on day 7 and returning to earlier values by day 21 was found in 5 patients. The increase in NK cytotoxicity was not reflected consistently in proportions of HNK-1-positive cells or Fc receptor-bearing cells within the first week of therapy. The most significant finding was an increase in the helper:suppressor cell ratio peaking on day 7 and returning to pretreatment values by day 21. This increase was seen in every patient studied. The average pretreatment Leu 3a:Leu 2a ratio was 0.67 increasing to an average value of 1.47 on day 7 (p less than 0.005). Leu 3a:Leu 2a ratios returned to pretreatment values, in parallel to NK activity, despite continuation of interferon therapy.

Cytotoxicity, Immunologic↗

[The effect of hydrodynamic conditions on the interferon-synthesizing activity of swine splenocytes in the production of alpha-interferon].

Parameters of physical constituents of the agitation process and mass-exchange characteristics of the suggested bioreactor for suspension cultivation of pig splenocytes are determined. The effect of hydrodynamic conditions on viability and interferon-synthesizing activity of cells in production of alpha-interferon of pigs has been studied. The relation existing between interferonogenesis processes proceeding under suspension and under stationary biosynthesis has been analyzed by the pair correlation method.

Animals↗

Clinical relevance of anti-interferon antibodies in the serum of chronic hepatitis C patients treated with interferon-alpha.

The development of anti-interferon (anti-IFN) antibodies in the serum of patients undergoing antiviral therapy has been postulated as one possible cause of interpatient variability in response to therapy. We analyzed the relationship between the appearance of anti-IFN antibodies and the loss of response to interferon-alpha (IFN-alpha), as characterized by a breakthrough of serum aminotransferase after a period of complete biochemical remission. The analysis involved clinical trials where neutralizing anti-IFN antibodies were detected by standardized and comparable methods. The results show that a time relationship between breakthrough and anti-IFN antibodies is observed in only a few cases and is independent of the type of IFN-alpha preparation used. Thus, causes of IFN resistance other than anti-IFN antibodies must also be implicated in most breakthrough cases. Another potential is the selection of drug-resistant viral strains. Current ration behavior following the appearance of breakthrough (from whatever cause) in clinical practice advocates changing treatment to a different type of IFN-alpha. The detection of anti-IFN enzyme-linked immunosorbent assay (ELISA) antibodies or IFN neutralizing antibodies does not appear to provide any additional information for decision making.

Alanine Transaminase↗

Interferon-alpha neutralizing antibodies in HIV and chronic HCV patients treated with natural-source human leukocyte-derived interferon-alpha n3.

Human leukocyte-derived IFN-alpha n3 (Alferon N Injection) was administered subcutaneously to treat 20 patients with asymptomatic human immunodeficiency virus type 1 (HIV-1) and 141 patients with chronic hepatitis C virus (HCV) infections. The treatment of HIV-1 and HCV patients, previously untreated with any IFN preparations, did not result in development of neutralizing antibodies to IFN-alpha n3. Among 69 HCV refractory patients who were unresponsive to previous treatment with rIFN-alpha 2b, 2 had neutralizing antibodies to rIFN-alpha 2b prior to IFN-alpha n3 therapy, with no or limited cross-reactivity to IFN-alpha n3. After retreatment with IFN-alpha n3, both patients had detectable neutralizing titers to IFN-alpha n3. Additionally, 2 other patients developed low and transient neutralizing titers to IFN-alpha n3. Interferon subtype specificity of these antibodies was tested against RP-HPLC purified fractions of IFN-alpha n3, as well as rIFN-alpha 2b and rIFN-alpha 8b. Sera from patients previously treated with rIFN-alpha 2b with high antibody titers to rIFN-alpha 2b strongly reacted with the natural IFN-alpha 2b, and to a limited extent with other iFN-alpha subtypes. Neutralizing activity against IFN-alpha 2b was significantly competed out by the presence of a small amount of other interferon subtypes present in IFN-alpha n3. One patient with prior presence of antibodies to IFN-alpha 2b developed a high antibody titer to IFN-alpha 8b with limited reactivity to IFN-alpha n3. Two of the HCV refractory patients with prior neutralizing antibodies to rIFN-alpha 2b responded to IFN-alpha n3 therapy. These data suggest that the presence of neutralizing antibodies to individual IFN-alpha species will not significantly diminish the biological activity and the clinical efficacy of multi-species IFN-alpha n3.

Antibodies↗

The role of Mig, the monokine induced by interferon-gamma, and IP-10, the interferon-gamma-inducible protein-10, in tissue necrosis and vascular damage associated with Epstein-Barr virus-positive lymphoproliferative disease.

The mechanisms of tissue necrosis and vascular damage characteristics of certain Epstein-Barr virus (EBV)-associated lymphoproliferative disorders are unknown. The CXC chemokines interferon-gamma-inducible protein-10 (IP-10) and the monokine induced by interferon-gamma (Mig) caused tissue necrosis and vascular damage in Burkitt's lymphoma tumors established in nude mice. We report higher levels of IP-10 and Mig gene expression in tissues with necrosis and vascular damage from EBV-positive lymphomatoid granulomatosis and nasal or nasal-type T/natural killer (NK)-cell lymphomas compared with tissues with lymphoid hyperplasia, which lacked tissue necrosis and vascular damage. By immunohistochemistry, Mig and IP-10 proteins localized with similar patterns in viable tissue surrounding dead tissue, mostly within endothelial cells, monocyte/macrophages, and lymphocytes. Circulating levels of IP-10 were abnormally elevated in patients with EBV-positive lymphomatoid granulomatosis and nasal or nasal-type T/NK-cell lymphomas. These experiments provide the first description of the presence of Mig in any human normal or diseased tissue and the first description of IP-10 in certain lymphoproliferative lesions. These data suggest that Mig and IP-10 play an important role in the pathogenesis of tissue necrosis and vascular damage associated with certain EBV-positive lymphoproliferative processes.

Adult↗

Efficacy of ribavirin plus interferon alpha on viraemia of GB virus-C/hepatitis G virus: comparison with interferon alpha alone.

We investigated the efficacy of ribavirin plus interferon (IFN) alpha on GB virus-C (GBV-C)/hepatitis G virus (HGV) viraemia and compared it with that of interferon alpha alone in patients coinfected with hepatitis C virus (HCV) and GBV-C/HGV. Serum HCV and GBV-C/HGV-RNA were studied in eight patients with HCV and GBV-C/HGV coinfection, five received IFN alpha and three received oral ribavirin plus IFN alpha. Mean serum GBV-C/HGV titre at the end of therapy was significantly lower than the titre just before therapy and patients with lower pretreatment titre had a better sustained response rate. Sustained virological response of GBV-C/HGV to IFN alpha alone and ribavirin plus IFN alpha at the end of follow up was observed in one each, respectively. Thus, GBV-C/HGV in patients with HCV and GBV-C/HGV coinfection does respond to IFN alpha and ribavirin plus IFN alpha may not induce a higher sustained response.

Adult↗

Serum levels of soluble interferon Alfa/Beta receptor as an inhibitory factor of interferon in the patients with chronic hepatitis C.

Human serum contains a soluble form of interferon alfa/beta (sIFN alpha/beta) receptors, the functional and clinical significance of which has not been investigated in patients with chronic hepatitis C. In the present study, serum levels of sIFN alpha/beta receptor were assessed in 81 patients with chronic hepatitis C and correlated with the effectiveness of IFN therapy in these patients. Serum levels of sIFN alpha/beta receptor were significantly higher in patients with chronic hepatitis C than in healthy control patients (P <.0001). In these patients, serum levels of sIFN alpha/beta receptor were correlated with those of alanine transaminase (ALT) (P <.05), (2'-5')serum oligo(A) synthetase (2-5AS) (P <.0001), and pathological stages of liver fibrosis (P <.01). In 55 patients with chronic hepatitis C who underwent IFN therapy, there was an inverse correlation between the pretherapeutic serum levels of sIFN alpha/beta receptor and the rate of increase in serum levels of 2-5AS after the start of IFN (P <.01). Pretherapeutic serum levels of sIFN alpha/beta receptor were significantly lower in patients who showed sustained response to IFN therapy compared with those who did not respond to the therapy (P <.05). Multivariate analysis showed that low levels of serum sIFN alpha/beta receptor (</=4.0 ng/mL) (P <.05) and serological hepatitis C virus genotype II (P <.05) were independent variables contributing to sustained response to IFN therapy. Thus, pretherapeutic serum levels of sIFN alpha/beta receptor were correlated with the effectiveness of IFN therapy, suggesting that sIFN alpha/beta receptor suppresses the effectiveness of IFN therapy in patients with chronic hepatitis C.

2',5'-Oligoadenylate Synthetase↗

Therapeutic implications of interferon regulatory factor (IRF)-1 and IRF-2 in diffusely infiltrating astrocytomas (DIA): response to interferon (IFN)-beta in glioblastoma cells and prognostic value for DIA.

The precise mechanisms governing the direct effect of IFN-beta, including apoptosis induction, are not yet fully understood. To gain a better insight into these mechanisms, we investigated the signaling pathways focusing particularly on interferon regulatory factor 1 (IRF-1) and IRF-2 in glioblastoma cell lines. Furthermore, we attempted to determine whether or not IRF-1 and IRF-2 act as additional prognostic indicators in diffusely infiltrating astrocytomas (DIA). We first assessed the cytotoxic effects of IFN-beta based on a cell growth study and modified MTT assay, and then quantified the apoptosis using a sandwich enzyme immunoassay following IFN-beta treatment in the cell lines, U-87MG, T98G, and A-172. Subsequently, we carried out an analysis of apoptosis-related molecules as evaluated by densitometric analysis of Western blots, focusing on IRF-1 and IRF-2, and two major initiator caspases, caspase-8 and caspase-9. Furthermore, we assessed the expression of type I IFN receptor, IRF-1, and IRF-2 using immunohistochemical techniques in 63 DIA (15 of WHO grade II, 18 of grade III, and 30 of grade IV), and analyzed their impact on prognosis. An increase in apoptosis was apparent after 48 h of IFN-beta treatment (1 x 10(4) IU/ml) in T98G but not in U-87MG or A-172. IFN-beta treatment for 6 h significantly enhanced the expression of IRF-1 in all three cell lines. However, an enhanced expression of IRF-2 was observed only in the not-most-sensitive, non-apoptosis-induced U-87MG and A-172. While minimal processing of caspase-8 was noted in the three cell lines throughout the experiment, caspase-9 activation was observed in the apoptosis-detected T98G after 48 h of treatment, as indicated by a 1.33-fold increase (P=0.037). On the other hand, the IRF-1 LI and IRF-1/IRF-2 LI ratio were greater in low-grade DAI, and were negatively correlated with the histopathological grade in DIA (P=0.017 and P=0.001, respectively). Furthermore, the IRF-1/IRF-2 LI ratio was negatively correlated with the MIB-1 LI in DIA (P=0.004), and represented an independent and most powerful determinant of overall survival compared to other conventional prognostic factors (P=0.018). However, the relation was not statistically significant when only patients with high-grade DIA were assessed. Our findings suggest that up-regulation of IRF-1 and IRF-2 might be an important determinant of susceptibility to IFN-beta mediated cytotoxicity including apoptosis. Furthermore, the IRF-1/IRF-2 LI ratio may reflect the proliferative state of DIA and constitute an important prognostic marker in DIA. Thus, IRF-1 and IRF-2 could represent one of the therapeutic target sites for the regulation of cell growth in DIA.

Adult↗

Counteracting effect of interferon-alpha and -beta on interferon- gamma-induced production of nitric oxide which is suppressive for antibody response.

We investigated the nitric oxide (NO)-mediated immunosuppressive activity of macrophages and the regulatory effect of type I (alpha and beta) interferons (IFNs) on IFN-gamma-induced NO production by macrophages. In the sheep red blood cell (SRBC)-specific secondary antibody response in vitro, the addition of macrophages to the culture of primed spleen cells substantially decreased the number of plaque-forming cells. The concentration of nitrite in the culture supernatant showed a positive correlation with the number of macrophages added in a dose- dependent manner, and the addition of NMMA, a potent inhibitor of NO production, resulted in the restoration of of the response. In addition, anti-IFN-gamma antibody abolished the ability of the immune culture supernatant to stimulate macrophages to produce NO. Therefore, the macrophage-dependent immunosuppression was due primarily to NO that was produced by macrophages in response to IFN-gamma derived from responding lymphocytes. The pretreatment of macrophages with IFN-alpha or -beta gave rise to a dramatic reduction of IFN-gamma-mediated NO production. In addition, the suppressive activity of these macrophages was much lower than that of untreated macrophages. These results indicate that type I IFNs can regulate the immune response by modulating IFN-gamma-induced production of immunosuppressive NO.

Animals↗

Interferon beta-1b reduces interferon gamma-induced antigen-presenting capacity of human glial and B cells.

Interferon (IFN) beta-1b has been shown to alter the course of multiple sclerosis and to inhibit MHC class II expression, but its effect on antigen presentation has not been examined in a functional assay (Neurology 43 (1993) 655-661). The effect of IFN beta-1b on alloantigen presentation by human antigen-presenting cells (APC) including human fetal astrocytes (HFA) and microglia was examined. The effect of IFN beta-1b on the ability of B cells to present tetanus toxoid (TT) to TT-specific T cell lines was also examined. APC were pre-treated with IFN gamma (100 units/ml), IFN beta-1b (10-2000 units/ml), or a combination of IFN gamma and IFN beta-1b for 3 days and washed thoroughly prior to culture with allogeneic peripheral blood lymphocytes (PBL) for a period of 6 days. Lymphocyte proliferation was then measured by tritiated thymidine uptake. Treatment of the APC with IFN beta-1b resulted in a reduction in the IFN gamma-enhanced alloantigen-induced T cell responses. This reduction ranged between 50 and 70%, was associated with a 30-50% reduction in HLA class II (DR) and 35-40% reduction in ICAM-1 expression on the HFA used as APC. IFN beta-1b pretreatment of B cells reduced their constitutive and IFN gamma enhanced capacity to present TT to TT-specific T cell lines by 50-80%. This was associated with a 30 +/- 11% mean reduction in class II (DR) expression and approximately 50 +/- 1% reduction in ICAM-1 expression in IFN beta-1b + IFN gamma-treated B cells compared to IFN gamma-treated B cells (mean of three experiments).(ABSTRACT TRUNCATED AT 250 WORDS)

Adjuvants, Immunologic↗

Binding of interferon-alpha and -beta to a component of the human type I interferon receptor expressed in simian cells.

The type I interferons (IFNs) are a family of homologous cytokines that compete for receptor binding. Past experiments with a cloned human IFN-alpha receptor component (designated herein as HuIFNAR-1) transfected into different cell backgrounds have given contradictory results in terms of binding and signalling after exposure of cells to different human type I IFNs. In order to investigate the binding specificity of human type I IFN subtypes to HuIFNAR-1, a cDNA encoding HuIFNAR-1 was transfected into simian COS cells. HuIFNAR-1 expression in COS cells, which was confirmed by Northern blot analysis, resulted in increased binding of 125I-labelled HuIFN-alpha 2 and -beta. These data support the participation of this receptor component in ligand binding, probably in association with other receptor components.

Animals↗

Interferon-gamma inhibits interferon-alpha signalling in hepatic cells: evidence for the involvement of STAT1 induction and hyperexpression of STAT1 in chronic hepatitis C.

IFN-gamma (interferon-gamma) modulates IFN-alpha therapy in chronic hepatitis C infection; however, the underlying mechanism remains unclear. Here we demonstrate that long-term (3-6 days) but not short-term (up to 1 day) IFN-gamma treatment of human hepatoma Hep3B cells attenuates IFN-alpha activation of STAT1 (signal transducers and activators of transcription factor 1), STAT2 and STAT3, but enhances IFN-gamma and interleukin 6 activation of STATs. Prolonged exposure to IFN-gamma also significantly induces STAT1 protein expression without affecting STAT2, STAT3 and ERK (extracellular-signal-regulated kinase) 1/2 protein expression. To determine the role of STAT1 protein overexpression in regulation of IFN-alpha signalling, Hep3B cells were stably transfected with wild-type STAT1. Overexpression of STAT1 via stable transfection enhances IFN-gamma activation of STAT1, but surprisingly attenuates IFN-alpha activation of STAT1, STAT2 and STAT3 without affecting Janus kinase activation. This STAT1-mediated inhibition does not require STAT1 tyrosine phosphorylation because overexpression of dominant-negative STAT1 with a mutation on tyrosine residue 701 also blocks IFN-alpha activation of STAT1, STAT2 and STAT3. Moreover, overexpression of STAT1 blocks IFN-alpha-activated STAT2 translocation from IFN-alpha receptor 2 to IFN-alpha receptor 1, a critical step in IFN-alpha signalling activation. Finally, significantly higher levels of STAT1 protein expression, which is probably induced by IFN-gamma, are detected in the majority of hepatitis C virus-infected livers compared with healthy controls. In conclusion, long-term IFN-gamma treatment inhibits IFN-alpha-activated signals most probably, at least in part, through the induction of STAT1 protein expression, which could partly contribute to IFN-alpha treatment failure in hepatitis C patients.

Antiviral Agents↗

Receptors for human alpha and beta interferon but not for gamma interferon are specified by human chromosome 21.

We examined the proposed role of human chromosome 21 in determining the cellular sensitivity to human alpha, beta, and gamma interferons (HuIFN-alpha, -beta, and -gamma) and the expression of the receptors for the HuIFNs with the use of mouse-human hybrid cells containing human chromosome 21. Hybrid cells (WA17) containing three copies of human chromosome 21 showed specific displaceable binding of 125I-labeled HuIFN-alpha 2 (125I-HuIFN-alpha 2), which was not observed with mouse parent (A9) cells. Crosslinking of 125I-HuIFN-alpha 2 bound to WA17 cells with disuccinimidyl suberate yielded a complex of Mr approximately equal to 150,000 similar to the 125I-HuIFN-alpha 2-receptor complex obtained with human cells as described earlier. Such a complex was not obtained with mouse parent (A9) cells or with hybrid cells containing certain other human chromosomes but not chromosome 21. Mice inoculated with mouse-human hybrid cells containing human chromosome 21 produce antibodies that block the antiviral action of HuIFN-alpha and -beta on human cells. Such antibodies could immunoprecipitate the 125I-HuIFN-alpha 2-receptor complex obtained from human cells but not free 125I-HuIFN-alpha 2, indicating that these antibodies were directed against the receptor. WA17 hybrid cells were highly sensitive to the antiviral action of HuIFN-alpha 2, -alpha (Le) and -beta but were completely insensitive to HuIFN-gamma. Furthermore, 125I-HuIFN-gamma showed specific binding to human WISH cells but not to WA17 hybrid cells or A9 mouse cells. The results indicate that the receptors for HuIFN-alpha and -beta but not for HuIFN-gamma are specified by human chromosome 21. Hybrid cells containing one, two, or three copies of human chromosome 21 were found to be increasingly sensitive to HuIFN-alpha 2, indicating that a chromosome 21-specified component (possibly the HuIFN-alpha receptor) may be a limiting factor in the cellular sensitivity to HuIFN-alpha.

Animals↗

Physiological and receptor-selective retinoids modulate interferon gamma signaling by increasing the expression, nuclear localization, and functional activity of interferon regulatory factor-1.

Synergistic actions between all-trans-retinoic acid (atRA) and interferon gamma (IFNgamma) on modulation of cellular functions have been reported both in vitro and in vivo. However, the mechanism of atRA-mediated regulation of IFNgamma signaling is poorly understood. In this study, we have used the human lung epithelial cell line A549 to examine the effect of atRA on IFNgamma-induced expression of IFN regulatory factor-1 (IRF-1), an important transcription factor involved in cell growth and apoptosis, differentiation, and antiviral and antibacterial immune responses. At least 4 h of pretreatment with atRA followed by suboptimal concentrations of IFNgamma induced a faster, higher, and more stable expression of IRF-1 than IFNgamma alone. Actinomycin D completely blocked the induction of IRF-1 by the combination, suggesting regulation at the transcriptional level. Further, we found that activation of signal transducer and activator of transcription-1 was induced more dramatically by atRA and IFNgamma than by IFNgamma alone. Expression of IFNgamma receptor-1 on the cell surface was also increased upon atRA pretreatment. Experiments using receptor-selective retinoids revealed that ligands for retinoic acid receptor-alpha (RARalpha), including atRA, 9-cis-retinoic acid, and Am580, sequentially increased the levels of IFNgamma receptor-1, activated signal transducer and activator of transcription-1, and IRF-1 and that an RARalpha antagonist was able to inhibit the effects of atRA and Am580. In addition, atRA pretreatment affected the transcriptional functions of IFNgamma-induced IRF-1, increasing its nuclear localization and DNA binding activity as well as the transcript levels of IRF-1 target genes. These results suggest that atRA, an RARalpha ligand, regulates IFNgamma-induced IRF-1 by affecting multiple components of the IFNgamma signaling pathway, from the plasma membrane to the nuclear transcription factors.

Active Transport, Cell Nucleus↗

Review of recent developments in the molecular characterization of recombinant alfa interferons on the 40th anniversary of the discovery of interferon.

Recombinant alfa interferons (IFN-alpha s) are approved worldwide for the treatment of a variety of cancers and diseases of virologic origin. A series of recent advances in the molecular characterization of recombinant IFN-alpha s have allowed the determination of the three-dimensional IFN-alpha 2b structure by high-resolution x-ray crystallography. We review here recent developments in our understanding of the molecular and physicochemical properties of recombinant IFN-alpha, including our current state of knowledge of the IFN-alpha gene family and the multiple species of human leukocyte IFN. Based on the reported three-dimensional structure of IFN-alpha 2b, we propose a molecular model for the IFN-alpha 2b receptor complex and predict models for the naturally occurring subtypes IFN-alpha 1 and IFN-alpha 8, as well as the synthetic, non-naturally occurring consensus IFN. Such models provide molecular insights into the mechanism of action of IFN-alpha.

Humans↗

Direct induction of interferon-gamma- and interferon-alpha/beta-inducible genes by double-stranded RNA.

Using Northern analysis, we here show that the inducibility by double-stranded (ds) RNA of interferon-alpha/beta-inducible genes is not restricted to a few genes but extends to all the genes known to be stimulated by IFN type I in fibroblasts. Moreover, we show that some genes, preferentially regulated by IFN-gamma, are also activated by dsRNA. We present a series of arguments demonstrating that the induction by dsRNA is not mediated by IFN. In addition to the fact that this induction occurs in the presence of cycloheximide and/or anti-IFN-alpha/beta antibodies in fibroblasts, we observed that, in IFN-resistant Daudi cells, ISG15 and IP-10 genes which are not induced by IFN-beta, are still inducible by dsRNA. dsRNA is also still active on 2-5 AS and ISG15 genes in cells carrying homozygous deletions of IFN alpha/beta genes. Actinomycin D experiments and nuclear in vitro elongation assays reveal that the induction by dsRNA involves, as its early step, a transcriptional event. This induction was found not to require protein synthesis, suggesting that activation of preexisting cellular factors is involved. The opposite inducibility by dsRNA of IFN-beta and 2',5'-oligoadenylate (2-5A) synthetase genes in serum-deprived fibroblasts indicates that pathways of induction by dsRNA of these two genes are not identical. Inhibition by 2-aminopurine of the induction of IFN-inducible mRNAs by IFN-beta or dsRNA suggests the participation of a protein kinase in their mechanism of action.

2-Aminopurine↗

Human interferon-alpha receptor: identification of the region involved in binding to interferon-alpha B.

Three polypeptides comprising amino acids 1-102, 93-260, and 261-410 of the extracellular domain of the human interferon-alpha receptor HuIFN-alpha R (Uzé, G., Lutfalla, G., and Gresser, I. Cell 1990; 60:225-234) have been expressed in Escherichia coli. The polypeptides were sequestered within bacterial inclusion bodies. Inclusion body material was solubilized by 8 M urea, and the polypeptides were purified by gel filtration or histidine tag-based affinity chromatography. Overall recovery of each purified and refolded polypeptide was approximately 0.5-0.8 mg/liter of cell culture. The polypeptides migrated as homogeneous monomers of 12 kDa, 22 kDa, and 17 kDa, respectively on reduced sodium dodecylsulfate polyacrylamide gel electrophoresis. The polypeptide fragments corresponding to amino acids 1-102, and 93-260 of the extracellular domain of HuIFN-alpha R lacked the ability to bind to IFN-alpha B and to inhibit its biologic activities. The polypeptide fragment corresponding to amino acids 261-410 of the receptor molecule inhibited the antiproliferative activity of IFN-alpha B and competed with the Daudi cell surface receptor for binding to this IFN-alpha species.

Antiviral Agents↗