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G J Dawson

Publications and source records attributed to G J Dawson.

At least 19 recordsLinked to original sources

Molecular and serologic analysis in the transmission of the GB hepatitis agents.

Two flavivirus-like genomes have recently been cloned from infectious tamarin (Saguinus labiatus) serum, derived from the human viral hepatitis GB strain, which is known to induce hepatitis in tamarins. In order to study the natural history of GB infections, further transmission studies were carried out in tamarins. Reverse-transcription-polymerase chain reaction and enzyme-linked immunosorbant assays were developed for the detection of RNA and antibodies associated with the two agents, GB virus-A and GB virus-B. The infectivity of both of these agents was demonstrated in tamarins to be filterable through a 0.1 micron filter. Two distinct genomes were identified in the serum of eight of the infected tamarins, while in four tamarins, the genomes were detected independently of each other. Although specific antibodies to the GB virus-B epitopes were detected in the serum of animals inoculated with both agents or GB virus-B alone, antibodies to putative epitopes specific to GB virus-A were not detected in any of the animals. All tamarins inoculated with serum containing GB virus-B exhibited an elevation in liver enzyme levels after inoculation. Elevations of serum liver enzyme levels did not occur when GB virus-A was the only agent detected in the serum. Infection with the original infectious tamarin inoculum conferred protection from reinfection with GB virus-B but not with GB virus-A.

Animals

Isolation of novel virus-like sequences associated with human hepatitis.

Two viruses, GB virus A (GBV-A) and GB virus B (GBV-B), were recently identified in the GB hepatitis agent. Human sera containing antibodies that recognize GBV-A and/or GBV-B recombinant proteins were subjected to polymerase chain reaction studies with degenerate oligonucleotides capable of amplifying a segment of the putative helicase genes from GBV-A, GBV-B or hepatitis C virus. Novel sequences related to members of the Flaviviridae were identified in sera from 12 individuals including 4 individuals with hepatitis. The limited nucleotide sequence identity between GBV-A, GBV-B and HCV sequences suggests that a novel virus, tentatively named GB virus C, may be responsible for some cases of non-A, non-B, non-C, non-D, non-E hepatitis.

Adult

Genomic organization of GB viruses A and B: two new members of the Flaviviridae associated with GB agent hepatitis.

The genomes of two positive-strand RNA viruses have recently been cloned from the serum of a GB agent-infected tamarin by using representational difference analysis. The two agent, GB viruses A and B (GBV-A and GBV-B, respectively), have genomes of 9,493 and 9,143 nucleotides, respectively, and single large open reading frames that encode potential polyprotein precursors of 2,972 and 2,864 amino acids, respectively. The genomes of these agents are organized much like those of other pestiviruses and flaviviruses, with genes predicted to encode structural and nonstructural proteins located at the 5' and 3' ends, respectively. Amino acid sequence alignments and subsequent phylogenetic analysis of the RNA-dependent RNA polymerases (RdRps) of GBV-A and GBV-B show that they possess conserved sequence motifs associated with supergroup II RNA polymerases of positive-strand RNA viruses. On the basis of similar analyses, the GBV-A- and GBV-B-encoded helicases show significant identity with the supergroup II helicases of positive-strand RNA viruses. Within the supergroup II RNA polymerases and helicases, GBV-A and GBV-B are most closely related to the hepatitis C virus group. Across their entire open reading frames, the GB agents exhibit 27% amino sequence identity to each other, approximately 28% identity to hepatitis C virus type 1, and approximately 20% identity to either bovine viral diarrhea virus or yellow fever virus. The degree of sequence divergence between GBV-A and GBV-B and other Flaviviridae members demonstrates that the GB agents are representatives of two new genera within the Flaviviridae family.

Amino Acid Sequence

Immune response to GOR, a marker for non-A, non-B hepatitis and its correlation with hepatitis C virus infection.

Recently, identification and molecular cloning of a host cellular gene designated GOR from chimpanzees experimentally infected with non-A, non-B hepatitis (NANBH) agent was reported. It was further demonstrated that there is a close association between the immune response to an antigenic peptide of GOR (GOR2) and NANBH. In order to define the specificity of the immune response, in the present study we have identified an additional epitope in the GOR gene sequence, upstream from GOR2, and studied its correlation with the immune response to hepatitis C virus (HCV) in NANBH patients. An enzyme-linked immunoassay (EIA) was developed which utilizes synthetic peptides designated spGOR346 and spGOR2 as the serological target for the detection of anti-GOR antibodies in patient serum samples from various hepatic and non-hepatic disease categories. GOR peptides identified 80-90% of the NANBH samples that were positive for HCV C100-3 and about 70% of the NANBH samples that were positive by Abbott prototype second-generation HCV antibody assay. Among a normal donor population(s), only 2-3% of the samples were positive for antibodies to GOR sequences, whereas from the patient categories unrelated to viral hepatitis as well as various nonhepatic diseases, the immune response to both GOR peptides was closely associated with the presence of antibodies to HCV. The data indicate that antibodies to GOR is a marker associated with NANBH.

Amino Acid Sequence

Solid-phase enzyme-linked immunosorbent assay for hepatitis E virus IgG and IgM antibodies utilizing recombinant antigens and synthetic peptides.

Four recombinant antigens representing two distinct antigenic domains from two different strains of hepatitis E virus (HEV), were used individually to develop four ELISAs designed to detect antibodies to HEV. Both IgG and IgM class antibodies to HEV were detected in 7 of 8 pedigreed serum/plasma from known outbreaks of HEV in Mexico, Burma, Somalia and Pakistan. In addition, specific HEV-antibodies were detected in cynomolgus macaques following inoculation with various HEV strains. Anti-HEV was also detected in 8 of 386 (2.1%) randomly selected American blood donors. Supplemental tests utilizing both synthetic peptides and specific blocking assays provided additional serologic data confirming the presence of anti-HEV. Similar prevalence studies on a limited number of available sera from other geographical regions (Alaska, Japan, Germany, New Zealand, Thailand and Mexico) confirmed the presence of anti-HEV in at least 1.1 to 7.6% of the specimens.

Animals

The natural history of infection with hepatitis C virus (HCV) in chimpanzees: comparison of serologic responses measured with first- and second-generation assays and relationship to HCV viremia.

The sensitivity of first- and second-generation tests for antibody to hepatitis C virus (HCV) and the relationship among the patterns of antibody response and HCV viremia were examined in serial serum samples from 6 chimpanzees experimentally infected with HCV and followed less than or equal to 3 years. HCV infection was transient in 4 chimpanzees and became chronic in 2. All chimpanzees developed antibodies to HCV detectable by second-generation assays, while only 5 of the 6 became positive by first-generation assay. Second-generation were consistently more sensitive than first-generation assays for the early diagnosis of primary HCV infection. The pattern observed with second-generation assays was not influenced by the outcome of HCV infection, since antibodies remained persistently detectable throughout follow-up regardless of whether viremia was transient or persistent. In contrast, the first-generation antibody response was variable: It usually disappeared after loss of viremia, whereas its presence paralleled HCV viremia in chimpanzees with chronic infection.

Animals

IgM-antibody response to hepatitis C virus antigens in acute and chronic post-transfusion non-A, non-B hepatitis.

A specific IgM solid-phase enzyme-linked immunoassay for the diagnosis of a recent infection by hepatitis C virus (HCV) was developed. The assay utilizes a structural antigen encoded by sequences at the 5' end of HCV (core region) and non-structural (NS) antigens encoded by the NS-3 (33c) and NS-4 (c100-3) regions of the HCV genome. Serial serum samples from several clinically diagnosed post-transfusion non-A, non-B hepatitis patients were analyzed for anti-HCV IgM. This antibody was frequently but transiently detected. Anti-HCV core IgM was more frequently detected than anti-c100-3 or anti-33c IgM. In individuals who resolved their HCV infection or progressed to chronicity, anti-HCV IgM was produced transiently at or near the onset of clinically diagnosed acute hepatitis.

Acute Disease

Detection of antibodies to hepatitis C virus in U.S. blood donors.

An enzyme immunoassay (EIA) which utilizes a solid phase coated with a recombinant antigen (c100-3) derived from the hepatitis C virus (HCV) genome was evaluated for efficacy in the detection of antibodies to HCV (anti-HCV). The sensitivity of the antibody test was demonstrated by the detection of anti-HCV in a well-characterized panel of human specimens known to contain the infectious agent of non-A, non-B hepatitis. The specificity of the anti-HCV test was evaluated by testing 6,118 serum specimens from volunteer blood donors considered to be at low risk for exposure to HCV. The specificity of the anti-HCV EIA was demonstrated to be 99.56%, since 6,069 of 6,096 specimens from this low-risk group were nonreactive. A total of 49 (0.80%) of the 6,118 specimens were repeatedly reactive in the test, and 22 (46.81%) of the 47 specimens available for additional testing were confirmed as positive for antibodies to HCV c100-3. Among commercial plasma donors, 390 (10.49%) of 3,718 specimens were repeatedly reactive in the EIA. A total of 375 (97.40%) of the 385 specimens available for further testing were confirmed as positive. These limited data indicate that the prevalence of antibodies to HCV is 0.36% (22 confirmed positives among 6,118 specimens) among volunteer blood donors and 10.08% (375 confirmed positives among 3,718 specimens) among commercial plasma donors. The importance of confirmatory testing is discussed.

Amino Acid Sequence

Antibodies to recombinant and synthetic peptides derived from the hepatitis C virus genome in long-term-studied patients with posttransfusion hepatitis C.

Eight of 13 Swedish patients (62%), studied prospectively, who developed posttransfusion non-A, non-B hepatitis (PT-NANBH) had earlier been found to seroconvert for antibodies to hepatitis C virus (anti-HCV) c100-3 in the first-generation anti-HCV enzyme-linked immunosorbent assay 1-18 (mean, 8) weeks after onset of hepatitis. By using a second-generation test utilizing antigens encoded by the core NS3 and NS4 region of HCV, a further four patients non-reactive to c100-3 (NS4) were found to seroconvert. Thus 12 of 13 (92%) Swedish patients with PT-NANBH were shown to have HCV infection. In addition, the serologic reactivity for several individual synthetic peptides and/or recombinant HCV proteins was studied in seven anti-HCV c100-3 seroconverts studied long-term after onset of acute PT-HCV infection. No special patterns were found that could differentiate patients who recovered from those who developed chronic HCV infection. It was concluded that the addition of new recombinant antigens derived from the core and NS3 region to c100-3 (NS4) both improved the sensitivity of the anti-HCV test and shortened the window phase to seroconversion.

Alanine Transaminase

Prevalence of antibodies to the core protein P17, a serological marker during HIV-1 infection.

Studies on monitoring the immune response to viral structural proteins during human immunodeficiency virus (HIV-1) infection have established the significance of antibodies to the core protein p24 during the progression of the disease. We have studied the prevalence of antibodies to the core protein p17 in order to study their diagnostic and prognostic significance in the pathogenesis of HIV-1. Full-length HIV-1 p17, molecularly cloned and expressed in Escherichia coli was purified by immunoaffinity chromatography using an HIV-1 p17-specific monoclonal antibody. A highly sensitive enzyme-linked immunoassay was developed using the purified recombinant p17 as the serological target to detect antibodies to p17. The results indicated that antibodies to p17 decline during progression of disease, with the decline being more dramatic as patients moved from asymptomatic to AIDS-related complex (ARC). Patient specimens deficient in p24 antibody, but having detectable levels of antibody to p17 were almost always positive for p24 antigen. Under these conditions, p17 antibody is an important serological marker because it provides a more consistent marker for core antigens during HIV-1 infection.

Acquired Immunodeficiency Syndrome

Discrimination of HIV-2 infection from HIV-1 infection by western blot and radioimmunoprecipitation analysis.

Serum and plasma samples were collected from blood donors who were confirmed positive for antibodies to HIV-1 in the United States, and from blood donors and individuals in West Africa and Portugal who were positive for antibodies to HIV-1, HIV-2, or both. Western blots and sodium dodecylsulfate-polyacrylamide gel electrophoresis (SDS-PAGE) radioimmunoprecipitation assays (RIPA) utilizing native HIV-1 and HIV-2 proteins were performed on these specimens to determine the ability of these procedures to discriminate between HIV-1 and HIV-2 infections. Extensive serologic cross reactivity between HIV-1 and HIV-2 p24 was found in both populations. Antibody reactivity to the envelope protein gp120 was able to discriminate 20 of 20 (100%) U.S. specimens as HIV-1 infections. In specimens from West Africa and Portugal, Western blot and RIPA were in complete agreement on 33 of 42 samples (78.6%). Among these 33 specimens, 10 were found to be reactive for antibodies to HIV-1 only, 10 were reactive to HIV-2 only, and 13 were considered to be dually reactive, having antibodies reactive with both HIV-1 gp120 and HIV-2 gp120. Nine of the 42 specimens were discordant by Western blot and RIPA classification, being dually reactive by one procedure and reactive with only one viral gp120 by the other technique. Because of the serological cross reactivities between HIV-1 and HIV-2, in certain populations it is difficult to ascertain whether an individual is infected with HIV-1, HIV-2, a new viral type, or whether the individual is infected simultaneously with multiple viruses. More specific tests such as viral isolation or molecular probes may be necessary to distinguish between infections with these viruses in certain populations.

Acquired Immunodeficiency Syndrome

Diagnostic utility of a mouse monoclonal antibody (5-21-3) employed as a competitive probe in an immunoassay to detect antibody to HIV-1 gp41.

A mouse monoclonal antibody, designated 5-21-3, was raised against HIV-1 gp41 using detergent-disrupted virus as the immunogen. Antibody 5-21-3 was conjugated to horseradish peroxidase (HRP) and employed as a competitive probe against normal and HIV-1 antibody-positive sera in an immunoassay to detect the presence of antibody to HIV-1 gp41. The diagnostic utility of the competitive monoclonal immunoassay was assessed by correlation to a similar assay which employed HRP-labeled polyclonal IgG from a gp41-seropositive donor as the competitive probe. The monoclonal immunoassay was greater than 98% as sensitive and 99% as specific as the polyclonal immunoassay, regardless of the geographic source or disease state of the donor. The monoclonal immunoassay also was nearly as effective as the polyclonal immunoassay in detecting points of seroconversion in individuals enrolled in longitudinal studies. Of particular interest was the finding that the epitope recognized by monoclonal antibody 5-21-3 did not map to the well-characterized gp41 immunodominant region.

Animals

Reliable detection of individuals seropositive for the human immunodeficiency virus (HIV) by competitive immunoassays using Escherichia coli-expressed HIV structural proteins.

We molecularly cloned the gag and env genes of the human immunodeficiency virus (HIV) and expressed fragments of these genes in Escherichia coli. Using the recombinant core and envelope proteins, we developed two competitive immunoassays (CIAs). Samples that recognized either the envelope or core proteins were considered positive for antibodies to HIV. This test system was comparable with western blot in detecting antibodies in patients with AIDS or AIDS-related complex that were repeatably reactive in the HIV screening test. All 360 individuals who were positive by western blot were positive by the CIA. A total of 844 samples repeatably reactive by an ELISA screening test were negative both by western blot and by the CIA; 48 samples positive by ELISA, but negative or indeterminate by western blot, were positive by the CIA. Alternate research procedures verified the positivity of these individuals. These data indicate that the CIA described here may be useful as an adjunct or alternative to the western blot.

AIDS-Related Complex

Correlation of enzyme-linked immunosorbent assays for serum human immunodeficiency virus antigen and antibodies to recombinant viral proteins with subsequent clinical outcomes in a cohort of asymptomatic homosexual men.

A cohort of asymptomatic homosexual men at a Boston community health center was screened for the presence of human immunodeficiency virus (HIV) serum antigen and antibodies to recombinant proteins containing portions of the envelope and the gag (core) gene products. Of 196 asymptomatic men screened, 149 were antigen-negative/antibody-negative, 41 were antigen-negative/antibody-positive, and six were antigen-positive/antibody-positive. All three men in whom the acquired immune deficiency syndrome (AIDS) developed over the next year were antigen-positive at enrollment. Although a larger portion of the men who were antigen-positive and did not demonstrate progression to AIDS after one year had thrush, zoster, or generalized lymphadenopathy, the associations were not statistically significant. Whereas all of the seropositive men had antibody to viral envelope antigens, about a quarter did not have detectable antibodies to recombinant core antigens. However, all of these men had detectable antibody to core antigens by Western blot. Titers to recombinant core and envelope antigens tended to be lower in the men with AIDS. HIV-infected persons who are more likely to have enhanced immuno-compromise may be identified by these newer tests, but further longitudinal studies will be necessary to fully understand their prognostic value.

AIDS-Related Complex