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Interferon plus ribavirin in chronic hepatitis C non-responders to recombinant alpha-interferon.

The aim of this study was to evaluate the most appropriate therapeutic protocol for patients with chronic hepatitis C not responding to a previous course of recombinant interferon alpha-2b (rIFN). Sixty patients were randomly assigned to two groups of 30 subjects each: group A was treated with double dose of the same type of rIFN (6 MU t.i.w.) plus ribavirin for 6 months; group B was treated with the same rIFN dose and duration as group A, but without ribavirin. An end of treatment complete response (ETCR) was defined as alanine transaminase (ALT) normalization with undetectable serum HCV-RNA at the end of the treatment, while an end of treatment biochemical response (ETBR) as ALT normalization with still detectable viraemia. The two groups were homogeneous. The patients with ETCR or ETBR were than followed-up for at least 1 year. A sustained biochemical response (SBR) was defined as the persistence of normal ALT with still detectable viraemia after a 12-month follow-up, and a sustained complete response (SCR) as the persistence of normal ALT with undetectable viraemia. Side-effects were only observed in patients treated with rIFN plus ribavirin: four cases (13%) discontinued the therapy owing to haemolytic anaemia. Combination therapy induced an ETCR in 11 patients (37%) and an ETBR in six (20%), while a SCR was observed in two subjects (7%) and a SBR in four (13%). The use of a double dose of rIFN alone obtained an ETCR in four cases (13%) and an ETBR in five (17%), with a SCR in two (7%) and a SBR in three (10%). Hence, both combination therapy and single treatment with higher rIFN doses were unable to show statistically significant long-term benefits in patients with chronic hepatitis C resistant to a previous course of rIFN treatment.

Adult↗

Retreatment for 24 vs 48 weeks with interferon-alpha2b plus ribavirin of chronic hepatitis C patients who relapsed or did not respond to interferon alone.

We assessed the efficacy of interferon (IFN) plus ribavirin over 24 or 48 weeks for the retreatment of patients with chronic hepatitis C who had relapsed or did not respond to a previous course of IFN. One-hundred and twenty patients (69 non-responders and 51 relapsers) were randomly assigned to receive IFN-alpha2b (3 million units thrice weekly) plus ribavirin (1,000-1,200 mg per day) for 24 weeks (group A: 58 patients) or 48 weeks (group B: 62 patients). Treatment was discontinued at week 12 if the alanine aminotransferase (ALT) level remained elevated. The rate of sustained response was 15.5% in group A and 37.1% in group B (P = 0.013). Relapsers treated for 48 weeks had a sustained response rate of 66.6% compared with a sustained response rate of only 25% in those treated for 24 weeks (P = 0.004). Moreover, a sustained response was seen in 14.3% of non-responders treated for 48 weeks and in 8.8% of those treated for 24 weeks (P = 0.71). Fifty-three per cent of patients with a normal ALT level and undetectable hepatitis C virus (HCV) RNA at week 12 had a sustained response compared with 14% of those who were HCV RNA positive at week 12 (P < 0.001). Independent predictive factors of sustained response were: therapy for 48 weeks (P = 0.0026), relapse after IFN treatment (P = 0.0006), loss of HCV RNA at week 12 (P = 0.0008) and HCV genotype non-1 (P = 0.024). Hence, in patients with chronic hepatitis C who failed to respond to a previous course of IFN monotherapy, combination therapy with IFN plus ribavirin for 48 weeks seems to be more effective than IFN plus ribavirin for 24 weeks.

Adult↗

HCV RNA levels during therapy with amantadine in addition to interferon and ribavirin in chronic hepatitis C patients with previous nonresponse or response/relapse to interferon and ribavirin.

Interferon (IFN) alpha in combination with ribavirin (RIB) is standard therapy for patients with chronic hepatitis C virus (HCV) infection. However, many patients do not respond with sustained HCV clearance to this therapy. At present, no accepted treatment strategy exists for these patients. Recent preliminary data have suggested that amantadine (AMA) is effective against HCV infection. In a pilot study, we treated 13 nonresponders and 10 response/ relapsers to previous IFN/RIB therapy with AMA 200 mg per day in combination with IFN 3 MU thrice weekly, and RIB 1000 mg per day for 24 weeks, with a 24-week follow-up period after end-of-treatment. At the end-of-treatment, 1 previous nonresponder and 5 previous response/relapsers were HCV RNA negative. At the end of follow-up, only 1 previous response/relapser remained HCV RNA negative and had a sustained response. During therapy, serum HCV RNA became undetectable in 4 previous nonresponders, of whom 3 had a breakthrough at week 24. Twenty-one patients continued therapy without dose reductions. One patient discontinued therapy prematurely due to sleeping disturbances, and another patient was withdrawn from therapy due to heavy alcohol intake. We conclude that the addition of AMA to IFN and RIB was well tolerated but had little, if any, impact on HCV RNA eradication in nonresponders or response/relapsers to previous IFN/RIB combination therapy.

Adult↗

Randomized, placebo-controlled, double-blind trial with interferon-alpha with and without amantadine sulphate in primary interferon-alpha nonresponders with chronic hepatitis C.

In primary interferon-alpha (IFN-alpha) nonresponders with chronic hepatitis C, retreatment with IFN-alpha has only limited efficacy with sustained response rates below 10%. Therefore, the aims of the present study were to compare the efficacy and safety of IFN-alpha alone or in combination with amantadine sulphate in nonresponders to previous IFN-alpha monotherapy. Fifty-five IFN-alpha nonresponders with chronic hepatitis C (mean age: 46.6 years) received IFN-alpha 6 MIU thrice weekly for 24 weeks followed by 3 MIU thrice weekly for additional 24 weeks. Amantadine sulphate (n=26) or a matched placebo (n=29) was given orally twice daily for 48 weeks. Because of a low initial response rate at week 12 (13/55 patients) and a high breakthrough rate (8/13 patients) after IFN-alpha dose reduction in week 24, a virological end-of-treatment response with undetectable serum HCV-RNA (< 1000 copies/mL) was achieved in only five patients (IFN-alpha/amantadine sulphate, one patient; IFN-alpha/placebo, four patients). After 24 weeks follow-up a sustained virological response was observed in only two patients receiving IFN-alpha and placebo. Health-related quality-of-life analysis showed a substantial improvement of the Profile of Mood States (POMS) scale concerning the subscales fatigue (P < 0.05) and vigor (P < 0.05) in patients receiving combined IFN-alpha/amantadine sulphate treatment compared with those treated with IFN-alpha alone. IFN-alpha/amantadine sulphate combination therapy was well tolerated without any serious adverse events. In conclusion, retreatment with IFN-alpha and amantadine sulphate does not increase the low sustained virological response rates of IFN-alpha therapy in primary IFN-alpha nonresponders with chronic hepatitis C, but may lead to a sustained improvement of health-related quality-of-life.

Adolescent↗

An anti-idiotypic antibody with an internal image of human interferon-gamma and human interferon-gamma-like antiviral activity.

D9D10, a monoclonal antibody that inhibits the biological activity of human interferon-gamma (IFN-gamma), was used to generate monoclonal anti-idiotypic antibodies. After a first selection, the monoclonal anti-idiotypic antibody AA1E5 was chosen to be fully characterized. To the best of our knowledge this is the first description of a monoclonal antibody with an IFN-gamma-like antiviral activity; AA1E5 competed with IFN-gamma for binding to D9D10 indicating its anti-idiotypic character. However, AA1E5 also fully mimics HuIFN-gamma as it not only binds to the HuIFN-gamma-receptor, where it competes with HuIFN-gamma, but more importantly AA1E5 and its Fv fragment, cloned and expressed in Escherichia coli, mimic the antiviral activity of HuIFN-gamma. Indeed, 15 microg of AA1E5 and 2.5 microg of its Fv fragment had an effect comparable to that of 10 IU of HuIFN-gamma in an antiviral assay on A549 cells. Sequence comparison between the complementarity determination regions of the antibody and the sequence of HuIFN-gamma revealed that both the heavy chain variable domain, VH, and the kappa light chain variable domain, Vkappa, have epitopes of 3-4 amino acids that are present in the HuIFN-gamma sequence, some of which contribute to receptor binding, as identified by Walter et al. [M. R. Walter, W. T. Windsor, T. L. Nagabhushan, D. J. Lundell, C. A. Lunn, P. J. Zauodny & S. K. Narula (1995) Nature 376, 230-235].

Amino Acid Sequence↗

Efficacy of granulocyte-macrophage colony-stimulating factor or lamivudine combination with recombinant interferon in non-responders to interferon in hepatitis B virus-related chronic liver disease patients.

BACKGROUND AND AIMS: Non-response to interferon (IFN) monotherapy is a major therapeutic problem in the management of chronic hepatitis B infection. The efficacy of combination therapy to enhance the immunomodulatory effect of IFN by combining granulocyte-macrophage colony-stimulating factor (GMCSF) or decreasing viral load by adding an antiviral agent such as lamivudine was evaluated prospectively. METHODS: Twenty-four patients with chronic hepatitis B who were non-responders to previous IFN therapy were randomized to receive an IFN and GMCSF (group A, n = 10) or IFN and lamivudine (group B, n = 14) combination for 6 months. The end-of-treatment response was assessed by hepatitis B virus (HBV)-DNA and hepatitis B e antigen (HBeAg) determination. RESULTS: All patients successfully completed both the treatment schedules. The mean age, alanine aminotransferase (ALT) levels, liver histology, HBV-DNA levels and distribution of HBV genotypes were comparable between the two groups. At the end of treatment there was a significant decrease in mean ALT levels. The HBV-DNA and HBeAg loss was seen in six of 10 (60%) patients in group A and in seven of 14 (50%) patients in group B. During a mean follow-up of 15 +/- 3 months, two of six (33%) patients in group A and three of seven (43%) patients in group B relapsed with HBV-DNA and HBeAg positivity, which meant an overall sustained response of 40% and 28%, respectively. None of the factors such as HBV viral load, ALT levels or liver histology could predict the non-response to combination therapy or occurrence of relapse. There was a trend in patients with genotype A compared with genotype D towards non-response to therapy, although the difference was not significant. CONCLUSIONS: The combination of IFN plus GMCSF or lamivudine was effective in non-responders to IFN monotherapy. Larger studies using such combination therapies would be helpful in improving treatment strategies for chronic hepatitis B.

Adult↗

Preliminary results of the alternating administration of natural interferon-alpha and recombinant interferon-gamma for metastatic renal cell carcinoma.

OBJECTIVE: To evaluate the efficacy and toxicity of the alternating administration of natural (n) interferon (IFN)-alpha and recombinant (r) IFN-gamma for metastatic RCC. PATIENTS AND METHODS: The study comprised 24 patients (median age 60 years, range 42-77), 20 of whom were evaluable for response and all 24 evaluable for toxicity. Initially, nIFN-alpha was administered subcutaneously on days 1 and 3, and rIFN-gamma on day 2, for 1-2 weeks in the evening or at night, both at doses of 3 MU. If this regimen was tolerated, nIFN-alpha and rIFN-gamma were administered at the same doses on days 1, 3 and 5, and on days 2 and 4, respectively. RESULTS: There were three complete remissions and two partial remissions, giving a total response rate of 25%. All responders (complete plus partial remission) had undergone nephrectomy. Multiple lung metastases completely disappeared from four responders. The median and maximum time to remission in the responders were 2 and 7 months, respectively. The survival time of the responders was significantly longer than that of those not responding (stable and progressive disease, P=0.0202). Toxicities were mostly limited to WHO grades 1 and 2, with grade 3 leucopenia and grade 4 hepatic dysfunction in only one patient each. These toxicities were transient and there were no treatment-related deaths. CONCLUSION: The alternating administration of nIFN-alpha and rIFN-gamma is an effective treatment for metastatic RCC. This treatment is particularly suitable for patients who have undergone nephrectomy and have lung metastases.

Administration, Cutaneous↗

Modulation of astrocyte inducible nitric oxide synthase and cytokine expression by interferon beta is associated with induction and inhibition of interferon gamma-activated sequence binding activity.

Although interferon (IFN)-beta is firmly established as a therapeutic agent for multiple sclerosis, information regarding its role in astrocyte cytokine production is limited. In primary cultures of human astrocytes, we determined the effects of IFN-beta on astrocyte cytokine [tumor necrosis factor-alpha (TNF-alpha) and interleukin (IL)-6] and inducible nitric oxide synthase (iNOS) expression by ribonuclease protection assay and ELISA. We found that IFN-beta inhibited astrocyte cytokine/iNOS induced by IL-1 plus IFN-gamma, but in the absence of IFN-gamma, IFN-beta enhanced IL-1-induced cytokine/iNOS expression. Electrophoretic mobility shift analysis (EMSA) demonstrated that IFN-gamma induced sustained IFN-gamma-activated sequence (GAS) binding, while IFN-beta induced transient GAS binding. When used together, IFN-beta inhibited IFN-gamma-induced GAS binding activity. Nuclear factor-kappa B (NF-kappaB) activation was not altered by either IFNs, whereas IFN stimulated response element (ISRE) was only activated by IFN-beta and not IFN-gamma. These results suggest that IFN-beta can both mimic and antagonize the effect of IFN-gamma by modulating induction of nuclear GAS binding activity. Our results demonstrating differential regulation of astrocyte cytokine/iNOS induction by IFN-beta are novel and have implications for inflammatory diseases of the human CNS.

Astrocytes↗

Efficacy and safety of pegylated (40-kd) interferon alpha-2a compared with interferon alpha-2a in noncirrhotic patients with chronic hepatitis C.

Administration of interferon (IFN) 3 times weekly in patients with chronic hepatitis C (CHC) is associated with low sustained responses, which may be, in part, related to this regimen's inability to maintain IFN concentrations sufficient to suppress viral replication. An enhanced IFN molecule produced by the covalent attachment of a branched 40-kd polyethylene glycol moiety to IFN alpha-2a (PEG[40kd] IFN alpha-2a) exhibits sustained absorption, a restricted volume of distribution, and reduced clearance compared with unmodified IFN alpha-2a. One hundred fifty-nine patients with CHC participated in a randomized, ascending-dose (45 or 90, 180, 270 microg) study comparing PEG(40kd) IFN alpha-2a administered once weekly with 3 MIU IFN alpha-2a administered 3 times weekly for 48 weeks to determine the most appropriate PEG(40kd) IFN alpha-2a dose for subsequent clinical trials. Efficacy was assessed by measuring hepatitis C virus (HCV) RNA following a 24-week treatment-free period. Sustained virological responses for PEG(40kd) IFN alpha-2a once weekly were 10% (45 microg; not significant), 30% (90 microg; P = .009), 36% (180 microg; P = .0006), and 29% (270 microg; P = .004), compared with 3% for the 3-times-weekly 3-MIU IFN alpha-2a regimen. The types and frequencies of adverse events and laboratory abnormalities were similar among all groups. In conclusion, once-weekly PEG(40kd) IFN alpha-2a was associated with a higher number of sustained virological responses compared with IFN alpha-2a 3 times weekly in patients with CHC, but had a similar safety profile. The 180-microg PEG(40kd) IFN alpha-2a dose appeared to be the optimal dose based on sustained virological response and its associated side-effect profile.

Adult↗

A randomized 4-arm multicenter study of interferon alfa-2b plus ribavirin in the treatment of patients with chronic hepatitis C not responding to interferon alone.

To determine whether a higher dosage of interferon (IFN) associated with ribavirin and/or prolonged time of administration may improve therapeutic efficacy, we conducted a 4-arm randomized trial on patients with chronic hepatitis C not responding to one or more previous treatment courses with IFN monotherapy. Group 1 (n = 139) received 3 million units (MU) IFN-alpha2b 3 times a week (t.i.w.) plus ribavirin 1,000 mg/d for 12 months; group 2 (n = 162) received 5 MU t.i.w. plus ribavirin for 12 months; group 3 (n = 142) received 3 MU t.i.w. plus ribavirin for 6 months; and group 4 (n = 151) received 5 MU t.i.w. plus ribavirin for 6 months. The primary end point was hepatitis C virus (HCV)-RNA clearance at the end of 6-month follow-up. HCV-RNA was negative in 15% of group 1, 23% of group 2, 11% of group 3, 16% of group 4 (group 2 vs. group 3, P =.04). Among patients with genotypes 1 and 4, sustained response was significantly higher in group 2 vs. group 3 (18% vs. 7%, P =.03; group 1 = 9%, group 4 = 12%, P = not significant [NS]). In patients with genotypes 2 and 3, sustained virologic response was not affected by the different regimens (group 1 = 32%, group 2 = 30%, group 3 = 30%, group 4 = 35%, P = NS). In conclusion, about 23% of nonresponders to IFN monotherapy may achieve a sustained response if re-treated by 5 MU t.i.w. IFN plus ribavirin 1,000 mg/d for 1 year. Patients with genotype 1 should receive a high dosage of IFN plus ribavirin for 12 months, whereas therapy for patients with genotype 2 or 3 should be less aggressive.

Adult↗

A potent antiviral effect on hepatitis C viral dynamics in serum and peripheral blood mononuclear cells during combination therapy with high-dose daily interferon alfa plus ribavirin and intravenous twice-daily treatment with interferon beta.

Hepatitis C virus (HCV) is known to infect and replicate within peripheral blood mononuclear cells (PBMC), thereby enabling the direct evaluation of antiviral mechanisms by analyzing HCV dynamics in PBMC. To address potential molecular differences associated with distinct antiviral regimens, we studied HCV dynamics in both serum and PBMC in 44 patients with HCV genotype 1b and high viral load who were randomly assigned to the following 4 different treatment groups: 1) combination therapy with 6 MU daily of interferon alfa 2b (IFN-alpha2b) plus 800 mg of ribavirin; 2) monotherapy with 6 MU daily of IFN-alpha2b; 3) monotherapy with twice-daily intravenous administration with 3MU of IFN-beta; and 4) monotherapy with daily intravenous administration with 6 MU of IFN-beta. HCV-RNA levels were measured serially using highly sensitive real-time detection polymerase chain reaction (PCR). HCV dynamics in both the serum and PBMC showed a "biphasic" pattern. The exponential decay slopes of the second phase were significantly higher in the combination or twice-daily dosing regimen groups compared with groups 2 or 4 (0.10 +/- 0.08 vs. 0.02 +/- 0.09 or 0.16 +/- 0.09 vs. 0.02 +/- 0.04 day(-1); P <.05 or P <.0005, respectively). Moreover, the viral half-lives in the second phase were significantly shorter in these groups (73.2 +/- 42.5 vs. 240.1 +/- 120.7 or 56.0 +/- 44.6 vs. 361.6 +/- 293.5 hours; P <.05 or P <.05, respectively). Additionally, the slope of HCV decline in PBMC tended to be higher in the combination regimens, as compared with monotherapy. Taken together, our data on HCV dynamics provide molecular insight into utilization of combination or twice-daily dosing regimens to increase rates of sustained viral eradication of HCV.

Adult↗

A randomized 4-arm multicenter study of interferon alfa-2b plus ribavirin in the treatment of patients with chronic hepatitis C relapsing after interferon monotherapy.

To determine whether a higher dosage of interferon (IFN) and/or a prolonged time of administration may improve the efficacy of combination therapy, we conducted a 4-arm randomized trial on patients with chronic hepatitis C relapsing after 1 or more previous treatment courses with IFN monotherapy. Group A (n = 70) received 3 MU IFN alfa-2b 3 times per week plus ribavirin 1,000 mg/d for 12 months; group B (n = 70) received 5 MU 3 times per week plus ribavirin for 12 months; group C (n = 82) received 3 MU 3 times per week plus ribavirin for 6 months, and group D (n = 73) received 5 MU 3 times per week plus ribavirin for 6 months. The primary end point was the clearance of viremia at the end of 6-month follow-up: test results for hepatitis C virus (HCV)-RNA were negative in 54% of group A, 56% of group B, 40% of group C, and 49% of group D patients (P = NS). Among patients with genotype 1 and 4, the sustained response was significantly higher in groups A and B than in group C (45%, 49% vs. 22%, P =.03; group D = 33%, P = NS). In patients with genotype 2 and 3, the sustained virologic response was not affected by the different regimens (group A = 69%, group B = 68%, group C = 62%, group D = 71%, P = NS). In conclusion, duration of therapy rather than IFN dosage is more important in increasing the sustained virologic rate among HCV-positive patients with genotype 1 and 4 relapsing after IFN monotherapy; patients with genotypes 2 and 3 can be effectively retreated with a 6-month course of combination therapy, avoiding unnecessary side effects and waste of resources.

Adult↗

Interferon alfa regulated gene expression in patients initiating interferon treatment for chronic hepatitis C.

Interferon alfa (IFN-alpha) is an approved therapeutic agent for chronic hepatitis C. To directly characterize the effects of IFN-alpha in humans, we used microarrays to profile gene expression in peripheral blood mononuclear cells (PBMCs) from hepatitis C patients treated with IFN-alpha. Seven patients were studied using two strategies: (1) in vivo: PBMCs were collected immediately before the first dose of IFN-alpha, and 3 and 6 hours after the dose; (2) ex vivo: PBMCs that were collected before the first IFN-alpha dose were incubated with IFN-alpha for 3 and 6 hours. The microarray datasets were analyzed with significance analysis of microarrays (SAM) to identify genes regulated by IFN-alpha. We identified 516 named genes up-regulated at least 2-fold, at a false discovery rate (FDR) of less than 1%. In vivo and ex vivo studies generated similar results. No genes were identified as regulated differently between these 2 experimental conditions. The up-regulated genes belonged to a broad range of functional pathways and included multiple genes thought to be involved in the direct antiviral effect of IFN-alpha. Of particular interest, 88 genes directly relating to functions of immune cells were up-regulated, including genes involved in antigen processing and presentation, T-cell activation, lymphocyte trafficking, and effector functions, suggesting that IFN-alpha up-regulates multiple genes involving different aspects of immune responses to enhance immunity against hepatitis C virus. In conclusion, IFN-alpha-inducible genes can be identified in human PBMCs in vivo as well as ex vivo. Signature changes associated with different treatment outcomes may be found among these genes.

Aged↗

A functional SNP of interferon-gamma gene is important for interferon-alpha-induced and spontaneous recovery from hepatitis C virus infection.

Cytokine polymorphisms are associated with disease outcome and interferon (IFN) treatment response in hepatitis C virus (HCV) infection. We genotyped eight SNPs spanning the entire IFN-gamma gene in two cohorts and assessed the association between those polymorphisms and treatment response or spontaneous viral clearance. The first cohort was composed of 284 chronically HCV-infected patients who had received IFN-alpha-based therapy and the second was 251 i.v. drug users who had either spontaneously cleared HCV or become chronically infected. A SNP variant located in the proximal IFN-gamma promoter region next to the binding motif of heat shock transcription factor (HSF), -764G, was significantly associated with sustained virological response [P = 0.01, odds ratio (OR) = 2.66 [corrected] (confidence interval 1.3-5.6)[corrected]]. The association was independently significant in multiple logistic regression (P = 0.04) along with race, viral titer, and genotype. This variant was also significantly associated with spontaneous recovery [P = 0.04, OR = 3.51 (1.0-12.5)] in the second cohort. Functional analyses show that the G allele confers a two- to three-fold higher promoter activity and stronger binding affinity to HSF1 than the C allele. Our study suggests that the IFN-gamma promoter SNP -764G/C is functionally important in determining viral clearance and treatment response in HCV-infected patients and may be used as a genetic marker to predict sustained virological response in HCV-infected patients.

Alleles↗

Orientation of a human leukocyte interferon molecule on its cell surface receptor: carboxyl terminus remains accessible to a monoclonal antibody made against a synthetic interferon fragment.

An 125I-labeled monoclonal antibody made against a synthetic 56-residue fragment of human leukocyte interferon (IFN) alpha 1 recognizes human, Escherichia coli-derived IFN alpha A bound to the surface of Madin-Darby bovine kidney cells. A major fraction of the antibody recognizes IFN specifically bound to the cells, because the number of bound antibody molecules corresponds to the number of cell-bound IFN molecules (as measured with radiolabeled ligand) and because the fraction of the IFN unspecifically bound to the cells is less than 10% of the total bound IFN. A synthetic carboxyl-terminal 16-residue IFN peptide, though not inhibiting binding of IFN to cells, inhibits binding of antibody to IFN. A recombinant IFN alpha A molecule with a carboxyl-terminal 13-residue deletion, though still able to compete for binding of IFN to cells, is not recognized by the antibody. Scatchard plot analysis of the binding data revealed apparent dissociation constants of 6.0 x 10(-10) M for the antibody-IFN interaction and of 4.0 x 10(-11) M for the IFN-cell receptor interaction. The antibody inhibits the binding of IFN to cells only weakly and neutralizes the antiviral activity of the ligand only when in a large molar excess. We conclude that the carboxyl-terminal 10-16 residues that are predicted from the cloned IFN cDNAs and that are present in some natural IFNs are not involved in binding to cells but are antigenic and hence exposed on the molecules' surface. That the carboxyl terminus is not directly involved in binding to cells is consistent with the observation that some IFNs with carboxyl-terminal deletions are biologically active.

Animals↗

Receptors for human gamma interferon: binding and crosslinking of 125I-labeled recombinant human gamma interferon to receptors on WISH cells.

Purified recombinant human gamma interferon (HuIFN-gamma), labeled with 125I (125I-HuIFN-gamma), was used to study receptors for HuIFN-gamma on human WISH cells. 125I-HuIFN-gamma was bound to WISH cells, and this binding was displaced by unlabeled HuIFN-gamma but not by unlabeled recombinant HuIFN-alpha 2 or [Ser17]HuIFN-beta (HuIFN-beta with serine substituted for cysteine at position 17), indicating the presence of specific binding sites for HuIFN-gamma. The cell-bound 125I-HuIFN-gamma was crosslinked with disuccinimidyl suberate or ethylene glycol bis(succinimidyl succinate), which yielded a complex of Mr approximately 105,000 +/- 5000 as analyzed by NaDodSO4/PAGE. The formation of this complex was prevented by preincubation of cells with unlabeled HuIFN-gamma but not with HuIFN-alpha 2 or [Ser17]HuIFN-beta, indicating that HuIFN-gamma binds to a specific receptor molecule and that HuIFN-alpha 2 or HuIFN-beta do not interact with this receptor. Experiments were carried out with 125I-labeled recombinant [Ser17]HuIFN-beta (125I-[Ser17]HuIFN-beta) to verify this conclusion. Binding and crosslinking of 125I-[Ser17]HuIFN-beta to human WISH cells and Daudi cells yielded a complex of Mr approximately 150,000 similar to that obtained with 125I-HuIFN-alpha 2 as described earlier. The formation of this Mr 150,000 complex with 125I-[Ser17]HuIFN-beta was displaced by unlabeled [Ser17]HuIFN-beta and by HuIFN-alpha 2 but not by HuIFN-gamma, indicating that [Ser17]HuIFN-beta binds to the same receptor as does HuIFN-alpha 2, identified earlier, and that HuIFN-gamma does not compete with 125I-[Ser17]HuIFN-beta for this receptor. We conclude that HuIFN-gamma interacts with specific receptors that are distinctly different from the receptors recognized by HuIFN-alpha and HuIFN-beta.

Amnion↗

Cytoskeletal association of human alpha-interferon-receptor complexes in interferon-sensitive and -resistant lymphoblastoid cells.

Human Daudi lymphoblastoid cells, which are highly sensitive to the antiproliferative action of human leukocyte alpha-interferon (IFN-alpha), and IFN-resistant and IFN-sensitive Daudi subclones (Cl2 and Cl1, respectively), contain 2300 (Kd = 20 X 10(-12) M), 3000 (Kd = 45 X 10(-12) M), and 3700 (Kd = 52 X 10(-12) M) IFN-alpha binding sites per cell, respectively. Thus, these IFN-sensitive and IFN-resistant cells have similar numbers of high-affinity IFN-alpha receptors. IFN-receptor complexes that are insoluble in Triton X-100 accumulate in IFN-sensitive but not in IFN-resistant cells. The ligand-induced accumulation of Triton-insoluble complexes in IFN-sensitive cells was inhibited by cytochalasin B. This suggests that the solubility change of IFN-receptor complexes results from their interaction with the cytoskeletal matrix. The dissociation of IFN-alpha from IFN-sensitive and IFN-resistant cells can be resolved into fast and slow components. IFN-alpha dissociates more slowly from IFN-sensitive cells than from IFN-resistant cells. Very slow dissociation of IFN-alpha from Triton-insoluble complexes correlates with this difference. These observations suggest that IFN-receptor complexes become coupled to the cytoskeletal matrix in IFN-sensitive but not in IFN-resistant cells, and that such interaction is an important element in the mechanism of the antiproliferative action of IFN-alpha on Daudi cells.

Burkitt Lymphoma↗

Cloning of murine interferon gamma receptor cDNA: expression in human cells mediates high-affinity binding but is not sufficient to confer sensitivity to murine interferon gamma.

A full-length cDNA encoding the murine interferon gamma (IFN-gamma) receptor was isolated from a lambda gt11 library using a human IFN-gamma receptor cDNA probe. The deduced amino acid sequence of the murine IFN-gamma receptor shows approximately 53% homology to its human counterpart but no homology to other known proteins. Murine IFN-gamma receptor cDNA was expressed in human HEp-2 cells, which do not bind murine IFN-gamma and are insensitive to its action. Transfectants displayed the same binding properties as mouse cells. The biological responsiveness of such transfectants to various biological effects of both human and murine IFN-gamma was investigated, including modulation of major histocompatibility complex class I and class II antigen expression, inhibition of cell growth, and antiviral activity. Like parental HEp-2 cells, these transfectants responded only to human, but not to murine, IFN-gamma. Inversely, mouse L929 cells transfected with human IFN-gamma receptor cDNA were insensitive to human IFN-gamma. These results confirm and extend previous findings, suggesting that species-specific cofactors are needed for IFN-gamma-mediated signal transduction.

Amino Acid Sequence↗