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Biomedical subjects

D Zagury

Publications and source records attributed to D Zagury.

At least 73 records · Page 4Linked to original sources

Cytopathic effect of human immunodeficiency virus in T4 cells is linked to the last stage of virus infection.

A principal feature of acquired immunodeficiency syndrome is depletion of T4 lymphocytes, which is partly due to a direct cytopathic effect of the virus. Both syncytial formation (viral-induced cell fusion) and premature cell death have been cited as the major cause for this phenomenon. By kinetic analysis of cell proliferation and cell lysis we show that the cytopathic effect correlates chiefly with virus production from infected cells, including giant syncytial cells. Most T4 cells were, at least transiently, infected by human immunodeficiency virus (human T-lymphotropic virus type IIIB strain); however, after phytohemagglutinin activation, only 10-30% of infected cells express virus (and die) at any one time, indicating that virus production, followed by cell killing, is linked to immune activation and cell differentiation. We also show that an interval exists before viral release, in which expression of viral antigens occurs on the cell surface, suggesting that infected cells are immunogenic before viral production. If so, they may induce a cell-mediated immune response that could minimize dissemination of human immunodeficiency virus, a possibility that has influenced our approaches to the development of a vaccine for prevention of acquired immunodeficiency syndrome.

Cell Line↗

Even transcriptionally competent proviruses are silent in bovine leukemia virus-induced sheep tumor cells.

To investigate the role of proviral integration and expression in cellular transformation induced by bovine leukemia virus (BLV), three BLV-induced tumors harboring a single proviral copy were selected upon restriction and hybridization analysis. Tumors 344 and 395 were shown to contain a full-size proviral copy, whereas in tumor 1345 the provirus appeared to be heavily deleted. RNA gel blot hybridization with an antisense RNA probe showed no transcription of the viral sequences in the fresh tumors or in sheep tumor cells growing in vitro. The proviruses were cloned and transfected in mammalian cell lines. Transient-expression experiments revealed that the complete proviruses were still able to express the trans-activating protein (Tat) as well as structural proteins, demonstrating that the nonexpression of a provirus in a tumor cell does not necessarily imply a structural alteration of the viral information. In contrast, sequence analysis of the provirus with a large deletion and transient-expression assays proved that this truncated provirus, isolated from a tumor, was unable to code for viral proteins. These data indicate that expression of viral genes, including tat, is not required for the maintenance of the transformed state.

Animals↗

Nucleotide sequence analysis of the env gene of a new Zairian isolate of HIV-1.

As a further step in the continuing process of defining the extent and nature of variability of the envelope (env) gene of HIV-1, we have cloned a new Zairian isolate, JY1, and sequenced the env gene of this isolate. Although the restriction map of the env region of JY1 was found to be more similar to that of the American prototype, BH10, than maps of all previously reported Zairian isolates and some American isolates, nucleotide sequencing of the JY1 env gene showed that it is among the most divergent from BH10 yet reported and that it differs from previously reported Zairian isolates almost to the same extent that it differs from BH10. A typical pattern of variable and constant regions was seen. A number of complex duplications were found in the hypervariable regions of JY1. The unique and highly divergent nature of the env gene of JY1 enhances its usefulness as part of a panel of HIV-1 isolates being evaluated in biologic and immunologic studies toward vaccine development.

Amino Acid Sequence↗

HIV-1 expression by T8 lymphocytes after transfection.

Acquired immune deficiency syndrome (AIDS) is an immunosuppressive disease associated with the depletion of T4 lymphocytes. Recently, an HIV-1 genome was molecularly cloned and shown to be fully infectious in vitro by transfection experiments. In this study, we show that HIV-1 can be transfected into T4 and T8 lymphocyte subpopulations and viral proteins and infectious virus particles are observed in both short- and long-term cultures. In addition, transfected T8 cells can be maintained in culture for long periods without apparent cytopathic effect.

Antigens, Viral↗

Antibodies to soluble CD4 in HIV-1-infected individuals.

A direct enzyme immunoassay (EIA) using the recombinant soluble form of CD4 (sCD4) produced in rodent cells as antigen was applied to detect antibodies to CD4 in sera from HIV-1- and HIV-2-infected patients. High titers of antibodies to sCD4 were found in sera from 12.6% of the HIV-1-infected persons included in this study, but not in 120 normal human sera. The reactivity of these antibodies with sCD4 was confirmed by a Western blot analysis. A possible anti-idiotypic origin of those antibodies was thought to be unlikely in view of the lack of inhibition of the binding of the biotin-labeled monoclonal antibody (mAb) anti-Leu3a by sCD4 positive sera. Attempts to correlate the evolution of the disease with the presence or absence of antibodies to sCD4 in a panel of well documented HIV-1-seropositive cases did not reveal any clear correlation. Sera from HIV-2-infected people (nine sera analysed), sera from HIV-1-infected chimpanzees (10 sera analysed) and sera from humans immunized with a recombinant vaccinia virus expressing gp160 (10 sera analysed) scored negative for antibodies to sCD4. The possible origin and biological significance of the observed antibodies to sCD4 are discussed.

Acquired Immunodeficiency Syndrome↗

Absence of antibodies to HIV-2/HTLV-4 in six central African nations.

We studied 1508 individuals from Zaire, Burundi, Tanzania, Zambia, Kenya, and Cameroon for antibodies to HIV-2/HTLV-4. AIDS, ARC, other disease or tumor patients and healthy people were sampled from 1984-1986. By radioimmunoprecipitation and SDS/PAGE analysis and/or Western blot we failed to find any samples with specific antibodies to HIV-2/HTLV-4 indicative of infection. In contrast, 363 of these 1508 individuals demonstrated antibodies to HIV-1/HTLV-3B by the same serologic assays. HIV-2/HTLV-4 infection appears to be quite rare in Central Africa. AIDS and related syndromes in this study were exclusively correlated with HIV-1 infection. Studies in West Africa have shown high rates of infection with HIV-2/HTLV-4 where cases of AIDS are still relatively uncommon. These results indicate that HIV-2/HTLV-4 has a distinct geographic distribution from that of HIV-1 in Africa. Further studies are necessary to better define the pathogenicity and natural history of this distinct new virus, HIV-2/HTLV-4.

Antibodies, Viral↗

Frequent lymphocytes infection by hepatitis B virus in haemophiliacs.

We have tested the different mononuclear blood cell populations of seven patients with severe haemophilia and one patient with F VII deficiency for the presence of HBV DNA. These subjects were all polytransfused with non-heated coagulation factors; three were HBsAg positive, five HBsAg negative but anti-HBc and anti-HBs positive; HBV DNA sequences were detected in six subjects including three without detectable serum HBsAg. Furthermore the viral DNA sequences were identified in the T lymphocyte subpopulations (OKT4+ and/or OKT8+ cells). This observation suggests that HBV infection of lymphocytes might be related to the immunological disorders observed in these patients.

Blood Coagulation Factors↗

Evidence for HTLV-III/LAV expression by primary cultures of T8 cells.

The selective targets for HTLV-III/LAV, the causal infectious agent of AIDS and AIDS-related complex (ARC), are T4 cells, apparently because the virus receptor is associated with T4 antigen determinants. This accounts for T4 cell depletion in AIDS and for a decrease of IL-2 production by AIDS peripheral blood lymphocytes (PBL) after in vitro PHA activation. By contrast, T8 cells are not targets for HTLV-III/LAV, since T8 cells from PBL and from long-term cultured T cells (CTC) could not be infected by the virus. We describe 2 samples of PBL from Zairian patients with HTLV-III infection in which HTLV-III was expressed by T8 cells. Evidence that T8 cells were expressing virus was obtained by complement cytotoxicity experiments performed in the presence of OKT8 monoclonal antibody (MAb), which removed HTLV-III-positive cells from cultured T cells producing the virus, and by double labelling experiments, in which some cells exhibit both T8 antigens detected either by IFA (rhodamine) or by rosetting in presence of OKT8 MAbs and HTLV-III antigens detected by IFA (fluorescein) with of anti-HTLV-III p24 and p15 MAbs. Since normal T cells have previously been shown to undergo antigenic diversity, we think these results can be explained by HTLV-III infection of T4 cells which later lost T4 antigens and acquired the T8 phenotype.

Acquired Immunodeficiency Syndrome↗

Long-term cultures of HTLV-III--infected T cells: a model of cytopathology of T-cell depletion in AIDS.

Long-term cultures were established of HTLV-III-infected T4 cells from patients with the acquired immune deficiency syndrome (AIDS) and of T4 cells from normal donors after infection of the cells in vitro. By initially reducing the number of cells per milliliter of culture medium it was possible to grow the infected cells for 50 to 60 days. As with uninfected T cells, immunologic activation of the HTLV-III-infected cells with phytohemagglutinin led to patterns of gene expression typical of T-cell differentiation, such as production of interleukin-2 and expression of interleukin-2 receptors, but in the infected cells immunologic activation also led to expression of HTLV-III, which was followed by cell death. The results revealed a cytopathogenic mechanism that may account for T4 cell depletion in AIDS patients and suggest how repeated antigenic stimulation by infectious agents, such as malaria in Africa, or by allogeneic blood or semen, may be important determinants of the latency period in AIDS.

Acquired Immunodeficiency Syndrome↗

Hepatitis B virus DNA sequences in lymphoid cells from patients with AIDS and AIDS-related complex.

A lymphotropic virus HTLV-III/LAV was recently identified as the etiologic agent of the acquired immune deficiency syndrome (AIDS). In a study of concomitant hepatitis B infections in patients with AIDS or the AIDS-related complex, DNA sequences of hepatitis B virus (HBV) were found in fresh and cultured lymphocytes from patients with AIDS even in the absence of conventional HBV serological markers. Furthermore, the restriction DNA pattern was consistent with the integration of the viral DNA. These results should prompt additional studies to reevaluate a possible role of HBV as a cofactor in AIDS in addition to the HTLV-III/LAV causal agent.

Acquired Immunodeficiency Syndrome↗

Evidence for HTLV-III in T-cells from semen of AIDS patients: expression in primary cell culture, long-term mitogen-stimulated cell cultures, and cocultures with a permissive T-cell line.

The development of acquired immunodeficiency syndrome or of acquired immunodeficiency syndrome-related complex by transmission of human T-lymphotropic retrovirus III by semen has previously been implicated by epidemiological studies. In vitro investigations were performed on mononuclear cells obtained from the semen of patients with acquired immunodeficiency syndrome to identify human T-lymphotropic retrovirus III or related retrovirus. The presence of human T-lymphotropic retrovirus III was demonstrated (a) in primary cell cultures, by the detection of the Mr 24,000 protein by indirect immunofluorescence assays by Day 6; (b) in activated long-term cell culture by reverse transcriptase activity, by indirect immunofluorescence (Mr 24,000 protein); and (c) in cocultures of T-cells from semen of AIDS patients and H9 cells by reverse transcriptase activity, indirect immunofluorescence, and the presence of virus particles by electron microscopy.

Acquired Immunodeficiency Syndrome↗

Heterogeneity of human natural killer cells.

The cell surface antigens and specificity of cultures of human natural killer (NK) cells, propagated in the presence of interleukin 2, were analyzed at the single-cell level. With the use of a micropipette isolation procedure, clones were initiated from cells of defined phenotype. The cell surface markers on the resultant clones were not stable and often diverged from those on the cells selected for initiation. Clones manifesting NK activity had low expression of T4 and T8 and most had some expression of T10, whereas clones without detectable cytotoxic activity had a considerable proportion of cells expressing T4 and/or T8 antigens. Within a cytotoxic clone, single cells shown to have killer activity were shown to express often T10 and infrequently T8; T4 was not detected on any of the reactive cells examined. The NK, reactive cells were found to express also antibody-dependent cell-mediated cytotoxicity and lectin-dependent cell-mediated cytotoxicity (LDCC), and some of the individual NK cells were shown to have the ability to lyse more than one type of target cell. However, there appeared to be considerable heterogeneity among the cells in the clones, with only 50-60% of cells displaying lytic activity against K562 cells at a given time. In addition, one cytotoxic clone appeared to have specific immune alloreactivity as well as NK and LDCC activities. The results of this study indicated that the cell surface phenotype and specificity of cytotoxic reactivity of cultured human NK cells were heterogeneous and suggested that such heterogeneity may be due to variations in the levels of differentiation and/or activation.

Cell Differentiation↗

HTLV-III in cells cultured from semen of two patients with AIDS.

Epidemiological results suggest that the etiological agent of the acquired immune deficiency syndrome (AIDS) is transmitted primarily through blood products, semen, and saliva. There is evidence that the human T-cell leukemia (lymphotropic) virus type III (HTLV-III) is this agent. HTLV-III has been isolated repeatedly from T cells obtained from peripheral blood or lymph node tissue of AIDS and pre-AIDS patients and of healthy people believed to have been exposed to the virus. In the present study, HTLV-III was detected in and isolated from T cells present in the seminal fluid of AIDS patients. Mononuclear cells from the semen of AIDS patients and normal individuals were cultured in the presence of T-cell growth factor (interleukin-2). After 6 to 8 days, HTLV-III antigens were transiently expressed by the cells from the AIDS patients but not by those from the normal individuals. When the mononuclear cells from the semen of AIDS patients were cocultured with a permissive human T-cell line, cell cultures were produced that expressed high levels of reverse transcriptase activity, showed retroviral particles by electron microscopy, and were positive for HTLV-III-specific antigens when tested by fixed-cell indirect immunofluorescence with the use of monoclonal antibodies to the p24 and p15 antigens of HTLV-III.

Acquired Immunodeficiency Syndrome↗

Human autologous rosettes. IV. Their relation with interleukin 2 activity production and natural killer cells in cancer patients.

Peripheral blood lymphocytes (PBL) of solid-tumor-bearing cancer patients produced a lower interleukin 2 (IL-2) activity after lectin stimulation than did those from normal subjects. Moreover natural killer (NK) cell activity and autologous rosette forming (ARF) cell rate are found significantly correlated with IL-2 production in these patients. No direct relation is observed between ARF cell ratio and NK cell activity in a given patient. A central role for IL-2 in cancer patient immune dysfunctions is suggested. Two lines of pathogenetic mechanisms are documented. First, PBL exhibited cellular function defects, namely, autologous receptor expression, IL-2 production, and NK activity. Second, these dysfunctions involved, at least partly, plasma factors. The possibility of specific deficiency, (e.g., thymic factors) is not documented. Conversely it is demonstrated that patient plasma contain immunosuppressive factor(s) that block(s) IL-2 production and ARF cell expression. Involvement of ARF cell receptor in T-cell activation is discussed.

Adult↗

Electrofusion of myeloma cells on the single cell level. Fusion under sterile conditions without proteolytic enzyme treatment.

A technique is presented which allows electrofusion of single cells under sterile conditions. The electrofusion chamber is placed in a Petri dish. Before a droplet of the fusion medium is pipetted between the electrodes, the chamber is completely covered with vaseline, which prevents the fusion medium evaporating. Additionally, the fusion chamber is treated with solutions containing poly(L)-lysine and pronase which results in a decreased movement of the cells on the glass between the electrodes and which allows electrofusion without any proteolytic pretreatment.

Animals↗

Phenotypic diversity within clones of human normal T cells.

Human normal T cells were selected for in vitro cloning according to the expression of T4, T8 or T10 antigens on individual cells. Clones were produced from each of these cells irrespective of the antigenic phenotype of the parental cell. The cloned progeny manifested, in many cases, shifts in antigen expression. Thus, T4+T8- cells gave clones expressing predominantly T4-T8+ and vice versa. The clonal expression of T4 and T8 seemed to be mutually exclusive. Antigenic shifts were recorded also in clones derived from T4-T8-T10- cells, resulting in T10+ clones which were also either T4+ or T8+ and from T4+T8-T10+ cloned cells yielding clones of either T4+ or T8+ cells. Testing functional properties we found that NK activity was mediated not only by T10+ cells but also, in some cases, by T4+ and T8+ cells. Moreover, TCGF production, which may reflect helper activity, was mediated not only by T4+ cells. Only the cytotoxic (CTL) activity seems to be confined to the T8 phenotype. Thus, it appears that T antigens, which seemed to be molecular markers of differentiation, are not markers for terminal differentiation and do not always reflect defined functional properties. These conclusions are drawn from cloning of normal T cells which manifest properties different from those of T-cell lines or T hybridomas.

Antibodies, Monoclonal↗