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Biomedical subjects

R R Redfield

Publications and source records attributed to R R Redfield.

At least 37 records · Page 2Linked to original sources

Serum IgA-mediated neutralization of HIV type 1.

The sera of 33 HIV-1-infected individuals, previously shown to neutralize HIV-1MN in vitro, were screened by ELISA for IgA reactivity against rgp120MN and a synthetic V3MN loop peptide. Six were selected for evaluation of the effect of serum IgA from infected individuals on the in vitro infection of susceptible target cells by HIV-1MN. By using protein G immobilized on Sepharose, we depleted the sera of IgG to a level undetectable by nephelometry and viral envelope-specific ELISA. The IgA component of the IgG-depleted serum was affinity purified with immobilized jacalin, a lectin that selectively binds the IgA1 fraction of human Ig. IgG-depleted sera and purified IgA1 serum fractions showing IgA reactivity against rgp120MN and V3MN by ELISA inhibited the in vitro infection of CEM-ss cells by HIV-1MN, but sera depleted of both IgG and IgA1 did not. These data show that, like serum IgG, serum IgA from selected HIV-1-infected individuals is capable of neutralizing HIV-1MN in vitro. The biologic significance of this observation and the identities of serum IgA-recognized HIV-1 neutralization epitopes remain to be determined.

HIV Antibodies↗

Consequences of stable transduction and antigen-inducible expression of the human interleukin-7 gene on tetanus-toxoid-specific T cells.

Interleukin-7 (IL-7) has previously been shown to increase antigen-specific immune responses; the effect of IL-7 on human antigen-specific T cell lines has not directly been addressed. A tetanus-toxoid (TT)-specific T cell line exhibited increased proliferation in the presence of exogenous IL-7, suggesting that IL-7 may be useful in the potentiation of immune responses to defined microbial antigens. Murine retroviral vectors encoding the human IL-7 gene and the neomycin phosphotransferase gene (neoR) were packaged into murine retroviral particles, and supernatants containing these retroviral vectors were used to infect a CD4+ lymphoblastoid cell line. Stable integration of the retroviral vector and constitutive expression of the IL-7 gene were observed. Successful IL-7 gene transduction into TT-specific T cells was also accomplished. Detection of neoR DNA sequences and expression of IL-7-specific mRNA increased with selection in geneticin. Production of IL-7 in these cells was induced by exposure to TT. Production of IL-4, IL-6, and interferon-gamma (IFN-gamma) was detected after antigenic stimulation; there was, however, no effect of IL-7 on the pattern or kinetics of cytokine production by these cells. Human IL-7 transduced cells showed greater proliferation to TT than control T cells, particularly at subthreshold TT concentrations. These dta imply that genetic modification of antigen-specific T cells may be a plausible strategy for the study and manipulation of the immune responses to microbial pathogens.

Animals↗

Negative-strand RNA transcripts are produced in human immunodeficiency virus type 1-infected cells and patients by a novel promoter downregulated by Tat.

Current understanding of human immunodeficiency virus type 1 (HIV-1) transcription is based on unidirectional expression of transcripts with positive-strand polarity from the 5' long terminal repeat. We now report HIV-1 transcripts with negative-strand polarity obtained from acutely and chronically infected cell lines by use of a template orientation-specific reverse transcriptase-PCR assay. These findings were confirmed in natural infection by analysis of RNA derived from peripheral blood mononuclear cell samples from 15 HIV-1-infected patients. A cDNA derived from a 2.3-kb polyadenylated HIV-1 RNA with negative-strand polarity which encodes a highly conserved 189-amino-acid open reading frame antiparallel to the envelope gene was isolated from acutely infected A3.01 cells. Through use of reporter gene constructions, we further found that a novel negative-strand promoter functions within the negative response element of the 3' long terminal repeat, which is downregulated by coexpression of Tat. Site-directed mutagenesis experiments demonstrated that NF-kappa B I and USF sites are crucial for negative-strand promoter activity. These data extend the coding capacity of HIV-1 and suggest a role for antisense regulation of the viral life cycle.

Amino Acid Sequence↗

Naturally occurring genotypes of the human immunodeficiency virus type 1 long terminal repeat display a wide range of basal and Tat-induced transcriptional activities.

The primary body of information on the structure of human immunodeficiency virus type 1 (HIV-1) long terminal repeat (LTR)/gag leader genotypes has been determined from the analysis of cocultivated isolates. Functional studies of this regulatory portion of the provirus have been derived from the study of in vitro-generated mutations of laboratory-adapted molecular clones of HIV-1. We have performed a longitudinal analysis of molecular clones from the LTR/gag leader region amplified directly from the peripheral blood of four patients over three years. We have found a remarkable number of point mutations and length polymorphisms in cis- and trans-acting regulatory elements within this cohort. Most of the length polymorphisms were associated with duplications of Sp1 and TCF-1 alpha sequences. These mutations were associated with a wide range of transcriptional activities for these genotypes in a reporter gene assay. Mutations in conserved Sp1 sequences correlated with a diminished capacity of such genotypes to bind purified Sp1 protein. Although no generalized trend in transcriptional activity was seen, a single patient accumulated mutations in NF-kappa B, Sp1, and TAR elements over this period. The analysis of naturally occurring mutations of LTR genotypes provides a means to study the molecular genetic consequences of virus-host interactions and to assess the functional impact of HIV therapeutics.

Base Sequence↗

Preferential antibody recognition of structurally distinct HIV-1 gp120 molecules.

We have developed an assay, using a biosensor matrix and surface plasmon resonance, that rapidly and reproducibly measures antibody reactivity to human immunodeficiency virus type 1 (HIV-1) gp120 in various structural conformations. In particular, antibodies displaying preferential reactivity to a CD4-binding competent ("native," rgp120) or CD4-binding incompetent ("reduced," rcmgp120) monomeric gp120 molecule were distinguished. This technique has advantages over conventional enzyme-linked immunosorbent assay (ELISA) methodology in which it is difficult to control the concentration of protein adsorbed to the ELISA wells and a significant disruption of protein structure occurs on adsorption. A population of gp120 molecules that lacked CD4 receptor binding capacity and bound antibodies specific for reduced gp120 was found in several native gp120 preparations. The relative amount of this CD4-binding incompetent population varied among the various preparations studied. This presence of CD4-binding incompetent molecules within various native recombinant gp120 preparations may have implications for HIV-1 envelope vaccine development. By measuring antibody-binding ratios, several monoclonal antibodies were identified, which, although elicited by immunization with various native gp120 preparations, bound specifically to reduced gp120. The ability to screen antibody specificity against HIV-1 envelope proteins with different conformations will assist in determining the quality of antibodies induced by various HIV-1 envelope vaccine candidates.

AIDS Vaccines↗

Immunization of HIV-infected patients with rgp160: modulation of anti-rgp120 antibody spectrotype.

HIV-1 infection results in progressive failure of the immune system with decline in the number and/or function of B-cell clones originally recruited in specific humoral responses. Spectrotypic analysis, done by isoelectric focusing and reverse blotting (IEF-RB), is one technique for evaluating the activity and the number of specific B-cell clones and is adaptable to the direct measurement of antibodies to conformationally intact epitopes. The anti-HIV-1 (IIIB) rgp120 spectrotype was measured in 30 early-stage HIV-infected volunteers undergoing vaccine therapy with recombinant gp160 (rgp160). Twenty-five of the patients displayed a clear oligoclonal banding pattern; seven (28%) showed the same pattern in all samples, while 18 (72%) showed changes. Ten of the latter had an increase in band intensity over the course of immunization, and eight had an increase in both band intensity and number of bands. In contrast, serum samples from eight patients receiving placebo (alum) showed no changes over a comparable period. These findings suggest that vaccine therapy with rgp160 may be able to expand the anti-HIV-1 (LAI) gp120 B-cell clone pool in some HIV-infected patients as well as increase antibody synthesis by established B-cell clones recruited during natural infection. These data provide further evidence that postinfection vaccination may provide an alternative strategy in the treatment of chronic viral diseases.

AIDS Vaccines↗

Immunotherapeutic strategies in the treatment of HIV infection and AIDS.

The immune response against HIV does not result in complete viral clearance. Recent interventions have focused on novel strategies to modify human anti-HIV immunity. Active vaccination of patients with HIV infection (vaccine therapy) safely alters the immune repertoire against HIV. This unique approach will provide insight into the immunoregulatory consequences of HIV-specific innate and adaptive immune responses, and hopefully define the immunological Achilles heel of HIV. Once defined, researchers, aided by current biotechnological techniques, can rationally design future vaccines and immune based therapeutic products.

AIDS Vaccines↗

Consequences of human immunodeficiency virus type 1 superinfection of chronically infected cells.

Infection of T cell lines by the type 1 human immunodeficiency virus (HIV-1) is associated with downregulation of the CD4 receptor and resistance to further HIV-1 infection, the phenomenon of viral interference. The ACH2 cell line, a model for chronic HIV-1 infection, possesses a single integrated copy of the HIV-1 strain LAI, is essentially CD4 negative, and can be induced to make virus by a variety of stimuli. We utilized the known sequence differences between HIVLAI and HIVRF to devise a polymerase chain reaction (PCR) strategy that permits reliable and quantitative discrimination between the two strains. We demonstrate that ACH2 cells can be superinfected by HIVRF at a frequency of 60-300 HIVRF genomes/10(4) ACH2 cells and that the frequency of superinfection appears to increase with time. Reverse transcription of ACH2 mRNA from days 13, 27, and 38 postinfection allowed a similar PCR strategy (RT-PCR) to be used to analyze full-length HIVRF- and HIVLAI-specific transcripts. These data suggested that superinfection of ACH2 with HIVRF results in an increase in expression of both HIVRF and HIVLAI mRNA. From day 13 to day 38 postinfection there was an increase in the relative expression of HIVRF compared with HIVLAI. By day 38, when only 1.1% of HIV DNA sequences were HIVRF derived, roughly 80% of the HIV-specific full-length mRNA was HIVRF in origin, with a concomitant decrease in HIVLAI transcription.

CD4 Antigens↗

Measurement of cerebrospinal fluid antibody to the HIV-1 principal neutralizing determinant (V3 loop).

Antibody to the human immunodeficiency virus (HIV)-1 principal neutralizing determinant (V3 loop) was measured by peptide enzyme-linked immunosorbent assay (ELISA) in cerebrospinal fluid (CSF) and paired serum samples of 21 HIV-seropositive patients. These patients had normal neurologic examinations and were without neurologic symptoms. Peptide ELISA demonstrated intrathecal antibody synthesis against the V3 loop of HIVMN, the V3 loop of HIVNY5, the V3 loop of HIVLAI, and the entire recombinant HIV-1MN gp120 in 21 of 21, 10 of 21, one of 21, and 12 of 21 patients, respectively. Biospecific interaction analysis (BIAcore), which requires only small amounts of CSF, was also used to detect anti-V3 CSF antibody. Fine mapping of linear epitopes within the V3 region was successful in three of five patients by Geysen PIN (PEPSCAN) ELISA and discordance between epitope specificity of CSF and serum antibody was found. While detection of CSF antibody against the V3 loop of HIVMN by peptide ELISA has been recently reported, we add to this finding using the peptide ELISA, PEPSCAN and BIAcore methodologies as well as measuring intrathecal antibody synthesis against V3 loops from HIV strains. Application of these techniques to future studies of anti-V3 antibody in CSF from persons receiving anti-HIV-1 immunizations may provide insight into the immunoregulation of the virus in the nervous system.

Amino Acid Sequence↗

HIV-1 proviral genotypes from the peripheral blood mononuclear cells of an infected patient are differentially represented in expressed sequences.

The RNA genome of the human immunodeficiency virus type 1 (HIV-1) is established as proviral DNA in infected cells. Only some of these cells may actively produce the array of viral RNAs that support progeny virion production. In vivo expression of a subset of proviral genotypes could influence the experimental characterization of the viral quasispecies. We have explored the relationship between DNA and cDNA genotypes of the envelope gene by the molecular cloning and nucleotide sequencing of these templates from noncultivated peripheral blood mononuclear cells from an HIV-1-infected patient. Eleven proviral DNA and nine cDNA clones representing the V1-V3 region of gp120 were recovered and sequenced. The proviral group was more heterogeneous than the cDNA group by nucleotide sequence changes and V1 length polymorphisms. Deduced amino acid sequences from this data set showed that the two groups were distinct in primary structure, in the position of N-linked glycosylation sites, and in the net charge of the V3 loop. The V1-V2 region discriminated between the groups more strongly than the V3 region. The differential representation of HIV-1 envelope genotypes in the cDNA versus the proviral compartment may have important implications for the pathogenesis of disease and for the design of antiviral therapeutics.

Amino Acid Sequence↗

Real-time biospecific interaction analysis of antibody reactivity to peptides from the envelope glycoprotein, gp160, of HIV-1.

A new assay designed to quantitate antibody reactivity to specific peptides using biospecific interaction analysis (BIAcore) has been developed. Peptides of various lengths (15-40 amino acids) and isoelectric points (pI = 4.5-13) were covalently linked (immobilized) to a biosensor and interacted with polyclonal human sera. The immobilization procedure was highly reproducible, with bound peptides retaining high antibody reactivity. The assay was rapid, requiring only 25-30 min to immobilize the peptide and 2-8 min for each subsequent peptide/serum binding interaction. The same peptide surface has been used for up to 90 cycles of serum binding and regeneration with only a 0.3% decay in reactivity over cycle number. The quantitative BIAcore signal, measuring peptide/antibody binding interactions, was directly related to the antigen/antibody concentrations within the biosensor. The assay allowed interactants to be studied in their native form and without the need of additional secondary detection antibodies. Correlation between conventional peptide ELISA and BIAcore was obtained. The BIAcore linear range persisted over a series of eight two-fold dilutions. This extended linear dynamic response range is an improvement over conventional ELISA measurements. The sensitivity for monoclonal antibody detection is similar to conventional ELISAs and 4.9 ng/ml was readily detected.

Amino Acid Sequence↗

Fine specificity of the humoral immune response to HIV-1 GP160 in HIV-1 infected individuals from Tanzania.

A total of 160 sera from HIV-1 infected individuals from Tanzania were examined for their fine specificity characteristics relative to 9 synthetic peptides that define HIV-1 gp160 epitopes. Immunorecessive and immunodominant epitopes were identified in both gp120 and gp41 based on serologic reactivity of these HIV-1 infected sera. A significant difference in fine specificity among HIV-1 infected individuals from Tanzania and the United States was observed for an immunodominant gp41 epitope. No significant differences in reactivity among asymptomatic vs. symptomatic HIV-1 infected individuals were detected for the selected HIV-1 gp160 epitopes defined by these peptides. The majority of sera from HIV-1 infected Tanzanians contained antibodies that recognized a peptide corresponding to the V3 region of gp120 from the HIV-1 MN isolate. These data suggest that regional isolates of HIV-1 may exist in Tanzania that differ from HIV-1 isolated in the United States. However, based on serology, HIV-1 isolates exhibiting sequences with HIV-1 MN V3 similarity may also be prevalent in Tanzania. The results of this study may be useful for the design of more effective AIDS diagnostic and therapeutic products for use worldwide.

Amino Acid Sequence↗

Comparison of antibody reactivity to human immunodeficiency virus type 1 (HIV-1) gp160 epitopes in sera from HIV-1-infected individuals from Tanzania and from the United States.

In this study, we compared sera from 159 human immunodeficiency virus type 1 (HIV-1)-infected individuals from Tanzania and 103 infected individuals from the United States for antibodies reactive with 10 HIV-1 gp160 epitopes defined by synthetic peptides. Our data indicate that the anti-gp160 antibody fine specificity differs between infected individuals from these two geographically diverse populations. For example, 50% of the Tanzanian sera contained antibodies reactive with an immunodominant HIV-1 gp41 epitope defined by peptide 600-611, whereas 91% of the sera from the United States were reactive. Differences in serologic reactivity between HIV-1-infected individuals from Tanzania and the United States were also observed with gp160 epitopes defined by peptides 503-528 and 846-860. Included among the peptides examined were four which corresponded to the V3 region of gp120. The majority of sera from either country contained antibodies reactive with peptide RP142, whose V3 sequence is based upon that of HIV-1 isolate MN. Further characterization of serologic reactivity suggested that sera from Tanzania were more likely to neutralize HIV-1 isolate IIIB or MN in vitro than were sera from the United States. These differences in antibody fine specificity between HIV-1-infected individuals from Tanzania and the United States suggest that regional isolates of HIV-1 may exist.

Acquired Immunodeficiency Syndrome↗

Viral DNA and mRNA expression correlate with the stage of human immunodeficiency virus (HIV) type 1 infection in humans: evidence for viral replication in all stages of HIV disease.

Studies of cultivatable human immunodeficiency virus type 1 (HIV-1) from plasma samples from infected patients have shown a correspondence between increasing viral burden and disease progression, but these measurements are selective and thus nonrepresentative of the in vivo viral load. Quantitation of proviral DNA sequences by the polymerase chain reaction in purified CD4+ T cells has shown a similar relationship but does not provide a measure of viral gene expression. We have studied viral DNA, genomic RNA, and spliced mRNA expression of HIV-1 in infected patients with a quantitative polymerase chain reaction assay. Viral RNA expression is detected in all stages of infection. These data show that the natural history of HIV infection is associated with a shift in the balance of viral expression favoring the production of genomic RNA without a preceding period of true viral latency.

Base Sequence↗

Examination of sera from human immunodeficiency virus type 1 (HIV-1)-infected individuals for antibodies reactive with peptides corresponding to the principal neutralizing determinant of HIV-1 gp120 and for in vitro neutralizing activity.

Sera from human immunodeficiency virus type 1 (HIV-1)-infected individuals from the United States and Tanzania were examined for antibody reactivity to four synthetic peptides which corresponded to the principal neutralizing determinant from the V3 region of HIV-1 gp120. We observed that the majority of sera from both countries contained antibodies reactive with a V3 peptide whose sequence is based on that of the HIV-1 MN isolate. We were unable to establish a relationship between the presence of V3-reactive antibodies, as measured by enzyme-linked immunosorbent assay and neutralization of homologous HIV-1 isolates, in sera from either the United States or Tanzania. We observed that some sera which contained high antibody titers to the V3 peptides failed to neutralize HIV-1, while others with no antibody reactivity to the panel of V3 peptides exhibited in vitro neutralizing activity. These results suggest that neutralizing epitopes exist outside the V3 loop and that the presence of V3-reactive antibodies in sera does not imply in vitro neutralization of the homologous HIV-1 isolate. In addition, it appears that the V3 loop may consist of both neutralizing and nonneutralizing epitopes. The identification of neutralizing as well as nonneutralizing epitopes will be important for the design of potential HIV-1 vaccines.

Amino Acid Sequence↗

HIV neutralization assay using polymerase chain reaction-derived molecular signals.

Characterization of the capacity of human polyclonal antibody to neutralize wild-type patient isolates has important implications for vaccine development. We report the development of a polymerase chain reaction-based neutralization assay that quantitatively measures each infection using HIV proviral formation. These molecular end points identified the absence or quantitative diminution of DNA provirus formation as well as a delay in the kinetics of HIV DNA provirus formation. Using both laboratory strain prototype isolates (HIV-1-MN, HIV-IIIb) and primary wild-type patients' isolates, neutralization end points were reproducibly determined. End points were reached within 72 h, thereby minimizing the impact of subsequent rounds of infection on interpretation of results. Although the neutralization titer of polyclonal sera was usually comparable using standard technology, this assay did find isolate-dependent variation in the relationship between p24 production and HIV proviral DNA formation. Finally, we noted the disparity between the ability of human sera to neutralize prototype and wild-type isolates in primary peripheral blood mononuclear cell targets. We believe this assay provides unique opportunities to characterize the initial events of virus-antibody interaction and will help to elucidate clinically relevant neutralization immunoregulatory mechanisms.

Base Sequence↗