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P C Doherty

Publications and source records attributed to P C Doherty.

At least 91 records · Page 5Linked to original sources

Requirement for Stat4 in interleukin-12-mediated responses of natural killer and T cells.

Signal transducers and activators of transcription (STATs) are activated by tyrosine phosphorylation in response to cytokines and mediate many of their functional responses. Stat4 was initially cloned as a result of its homology with Stat1 (refs 4, 5) and is widely expressed, although it is only tyrosine-phosphorylated after stimulation of T cells with interleukin (IL)-12 (refs 6,7). IL-12 is required for the T-cell-independent induction of the cytokine interferon (IFN)-gamma, a key step in the initial suppression of bacterial and parasitic infections. IL-12 is also important for the development of a Th1 response, which is critical for effective host defence against intracellular pathogens. To determine the function of Stat4 and its role in IL-12 signalling, we have produced mice that lack Stat4 by gene targeting. The mice were viable and fertile, with no detectable defects in haematopoiesis. However, all IL-12 functions tested were disrupted, including the induction of IFN-gamma, mitogenesis, enhancement of natural killer cytolytic function and Th1 differentiation.

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Lack of IL-4-induced Th2 response and IgE class switching in mice with disrupted Stat6 gene.

Signal transducers and activators of transcription (Stats) are activated by tyrosine phosphorylation in response to cytokines, and are thought to mediate many of their functional responses. Stat6 is activated in response to interleukin (IL)-4 and may contribute to various functions including mitogenesis, T-helper cell differentiation and immunoglobulin isotype switching. To evaluate the role of Stat6, we generated Stat6-null mice (Stat6 -/-) by gene disruption in embryonic stem cells. The mice were viable, indicating the lack of a non-redundant function in normal development. Although naive lymphoid cell development was normal, Stat6 -/- mice were deficient in IL-4-mediated functions including Th2 helper T-cell differentiation, expression of cell surface markers, and immunoglobulin class switching to IgE. In contrast, IL-4-mediated proliferation was only partly affected.

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Selective response of gamma delta T-cell hybridomas to orthomyxovirus-infected cells.

A gamma delta T-cell hybridoma established from influenza virus-infected mice responded to a reproducible way when cultured with influenza virus-infected stimulators. Subclones of this line responded to cells infected with influenza viruses A/PR/8/34 (H1N1), X-31 (H3N2), and B/HK/8/73 but not to cells infected with vaccinia virus or Sendai virus. This spectrum of response to both type A and type B orthomyxoviruses has never been recognized for the alpha beta T-cell receptor-positive subsets. There was no response to cells infected with a panel of recombinant vaccinia viruses expressing all individual influenza virus proteins, and so it is unlikely that the stimulating antigen is of viral origin. The alternative is that the antigen is a cellular molecule induced in influenza virus-infected cells. Infectious virus was required for stimulation, and immunofluorescence studies showed increased expression of heat shock protein 60 (Hsp60) in influenza virus- but not Sendai virus- or vaccinia virus-infected cells. Both the hybridoma generated from influenza virus-infected mice and an established hybridoma which uses the same gamma delta T-cell receptor combination responded to recombinant Hsp60. Furthermore, the Hsp60-reactive hybridoma, which was obtained from an uninfected mouse, also responded to influenza virus-infected cells, indicating that Hsp60 may indeed be the target antigen.

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Immune CD4+ T cells promote the clearance of influenza virus from major histocompatibility complex class II -/- respiratory epithelium.

The experiments described establish that CD4+ T-cell-dependent effector mechanisms can eliminate an H3N2 influenza A virus from lung cells that are unable to express class II major histocompatibility complex (MHC) glycoproteins. Radiation chimeras were made by using CD4+ T cells and bone marrow from CD8-depleted, MHC class II +/+ mice and irradiated (950 rads) MHC class II -/- recipients. The influenza virus-specific CD4+ T-cell responses in these +/+-->-/- mice were not obviously different from those in the +/+-->+/+ controls: the cytokine profiles, the spectra of plasma cells producing the various immunoglobulin isotypes, and the frequencies of virus-specific CD4+ T cells were similar for the two groups. Expression of class II MHC glycoproteins on stimulator cells, B lymphocytes, and monocytes/macrophages is apparently sufficient for CD4+ T cells to terminate influenza virus infection of MHC class II -/- respiratory epithelium. A possible explanation is that the local spread of this lytic virus in the lung is limited by cytokines and/or antibody.

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Cytokine production in the immune response to murine gammaherpesvirus 68.

Cytokine profiles were determined following intranasal infection of C57BL/6J mice with murine gammaherpesvirus 68 (MHV-68). Spleen, mediastinal, and cervical lymph node cells from infected mice produced high levels of interleukin 6 (IL-6) and gamma interferon (IFN-gamma) and lower levels of IL-2 and IL-10 following in vitro restimulation. Little or no IL-4 or IL-5 was detected. Cytokine production was generally maximal at 10 days after infection, correlating with viral clearance from the lung, although significant levels were seen as early as 3 days after administration of the virus. In vitro infection of naive splenocytes induced B-cell- dependent secretion of IL-6 and IL-10, whereas IFN-gamma and IL-2 were produced only by cells that had been primed in vivo. Depletion of B lymphocytes from primed splenocyte populations did not, however, abrogate IL-6 and IL-10 production. Highly purified immune T cells made IL-6, IL-10. and IFN-gamma following in vitro restimulation with MHV-68. Thus, IL-6 and IL-10 are components of both the acquired and the innate host response. These cytokines have potential roles in the establishment and maintenance of persistent infection.

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Defective lymphoid development in mice lacking Jak3.

The Janus tyrosine kinases (Jaks) play a central role in signaling through cytokine receptors. Although Jak1, Jak2, and Tyk2 are widely expressed, Jak3 is predominantly expressed in hematopoietic cells and is known to associate only with the common gamma (gamma c) chain of the interleukin (IL)-2, IL-4, IL-7, IL-9, and IL-15 receptors. Homozygous mutant mice in which the Jak3 gene had been disrupted were generated by gene targeting. Jak3-deficient mice had profound reductions in thymocytes and severe B cell and T cell lymphopenia similar to severe combined immunodeficiency disease (SCID), and the residual T cells and B cells were functionally deficient. Thus, Jak3 plays a critical role in gamma c signaling and lymphoid development.

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Laser light suicide of proliferating virus-specific CD8+ T cells in an in vivo response.

Virus-specific CD8+ CTL precursor (CTLp) frequencies are a function of rates of clonal expansion and loss, both of which are difficult to assess in vivo. Proliferating T cells incorporate the nucleoside analogue 5-bromo-2'-deoxyuridine (BrdU), making them sensitive to light-induced apoptotic cell death (suicide). Mice were infected with an influenza A virus, then given 50 mg of BrdU 24 h before sampling. Exposure of freshly isolated, CD8-labeled T cells to the laser beam of the flow cytometer resulted in the elimination of > 90% of the responding CTLp. The effect was obvious for the regional lymph node from day 6 to day 12 after priming, indicating continued cycling over a 7-day interval. Thus, as CTLp frequencies remain fairly constant from 7 to 30 days after infection, the persistent increase (> 30x) in numbers must be accompanied by a very substantial loss of virus-specific CD8+ T cells.

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Characteristics of the influenza virus-specific CD8+ T cell response in mice homozygous for disruption of the H-2lAb gene.

The development of influenza virus-specific CD8+ cytotoxic T lymphocyte precursors (CTLp) is diminished in H-2b mice that are homozygous (-/-) for disruption of the H-2lAb gene. Virus clearance was not obviously delayed when compared with the congenic H-2lAb (+/+) controls, and evidence of CTL activity was apparent for inflammatory cells recovered from the respiratory tract in both cases. However, the virus-specific CTLp that are normally present in the regional lymph nodes and in the infected lung were evidently being consumed at the peak of the host response to give the terminally differentiated CTL effectors. Even so, any exhaustion of the CTLp pool was apparently transitory with this localized infection as, though the frequencies were consistently lower than those found for the (+/+) controls, CTLp could be detected reproducibly in both lymph nodes and spleen through 14 mo after infection. Analysis of cytokine profiles during the acute response showed a substantial defect in the (-/-) mice, indicating that cytokine production is largely dependent on the influenza-specific CD4+ set.

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Anatomical environment as a determinant in viral immunity.

The immune response is not monolithic. The phenotype of immunity is modulated by the range of environments that lymphocytes experience as they passage through, or lodge for a time in, both secondary lymphoid tissue and other organ systems. Although we are constrained to think in terms of the homogeneity characteristic of the tissue culture flask, the cellular events in particular in vivo sites can vary considerably. The profiles found for accessible "windows" such as the blood, tonsil, or spleen do not necessarily reflect the totality of the host response. The theme of anatomically related divergence in the effector and memory phases of immunity is developed here, using examples from experiments with viruses.

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Subverting lymph node trafficking by treatment with the Mel-14 monoclonal antibody to L-selectin does not prevent an effective host response to Sendai virus.

A single 250-micrograms dose of the Mel-14 mAb to L-selectin greatly diminished the extent of L-selectin expression on lymphocytes and decreased (60 to 90%) the massive cellular recruitment to the cervical and mediastinal lymph nodes that follows intranasal infection of naive C57BL/6 mice with Sendai virus. The numbers of CD8+ CTL precursors in the mediastinal lymph nodes were considerably reduced on day 7, when compared with virus-infected mice given a control rat IgG2a, but potent CTL effectors were present in the lungs of both groups by day 10 after infection, and the overall magnitude of CTL precursor generation was not obviously compromised. The early dominance of Sendai virus-specific IgM Ab-forming cells was prolonged in the Mel-14-treated mice, whereas plasma cells producing virus-specific IgA were abnormally prominent in the lymph nodes but not in the spleen. The kinetics of virus-specific Ab-forming cells generation and the serum Ab response for the various IgG isotypes were also delayed. Thus, though L-selectin is clearly important for the localization of naive lymphocytes to regional lymph nodes, the Mel-14-treated mouse can still deal effectively with a virus that causes productive infection only in the respiratory tract. The spleen, where L-selectin does not determine lymphocyte trafficking, is a major site for the compensatory T cell and B cell responses.

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Prevalence and activation phenotype of Sendai virus-specific CD4+ T cells.

The relative prevalence of Sendai virus-specific CD4+ T helper precursors (Thp) has been assessed by limiting dilution analysis (LDA). Within 10 days after intranasal inoculation of C57BL/6 mice, Thp prevalence increased from < 1 in 10(5) to approximately 1 in 200 in CD4+ T-cell-enriched spleen and mediastinal lymph node populations. These frequencies remained elevated relative to naive animals, with the majority of the Thp recovered at 2-3 months after infection being found in the spleen. The "memory" Thp express an "activated" L-selectin-low, CD44-high, alpha 4-integrin-high phenotype, comparable to that described previously for CD8+ cytotoxic T lymphocyte precursors (CTLp) specific for Sendai virus. Background effects for the IL-2-based Thp analysis are, however, less predictable than those found previously for the 51Cr release CTLp LDA, as the extent of non-virus-specific lymphokine production varies. However, provided the analysis is appropriately controlled, the approach does allow useful comparisons between phenotypically different subsets of antigen-specific CD4+ T cells.

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Temporal loss of the activated L-selectin-low phenotype for virus-specific CD8+ memory T cells.

Whether the L-selectin-low (L-sel-lo) phenotype of acutely stimulated CD8+ T cells is a permanent characteristic of long-term memory CTL precursors (p) is addressed for mice primed with an influenza A virus or the murine parainfluenza type 1 virus, Sendai virus. In both cases, many of the splenic CD8+ CTLp gradually lose the predominantly L-sel-lo profile associated with recently generated CTLp populations. The influenza-specific CTLp also tend to revert from the activated alpha 4-integrin-high to the resting alpha 4-integrin-low form. The kinetics of the switch back to the "naive" L-sel-hi phenotype differs for the influenza and Sendai virus models, perhaps reflecting events occurring during the acute phases of these responses. The return to being L-sel-hi is not due to irreversible lymphocyte senescence, because restimulation of this set with the inducing virus in vitro causes most of the cells to become L-sel-lo. Also, despite the time-related drift of these particular memory CTLp to the L-sel-hi state, the size of the total pool of L-sel-lo CD8+ T cells increases with age.

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Recruitment and proliferation of CD8+ T cells in respiratory virus infections.

The dramatic increase in the cellularity of the mediastinal lymph nodes (MLN) of mice infected intranasally (i.n.) with influenza viruses is a consequence of both recruitment and proliferation. As many as 20% of the CD8+ subset in the MLN can be shown to be in S or G2 + M phase at 6 days after i.n. challenge with the HKx31 influenza A virus, the percentage of of cycling cells being approximately five times greater for the activated/memory substantial evidence of apoptosis was found for CD8+ T cells recovered from the MLN and lung, particularly at 5 and 7 days after infection. Less than 1/100 of the proliferating T cells could be shown, by limiting dilution analysis (LDA), to be influenza virus-specific CD8+ cytotoxic T lymphocyte precursors (CTLp). A single, low dose (20 mg/kg) of the DNA-targeted drug cyclophosphamide (Cy) caused a massive decrease in frequency for the responding CD8+ CTLp, though the mice survived infection with the HKx31 virus and there was no long-term exhaustion of the CTLp pool in the MLN, spleen, or lung. The Cy treatment was also followed by a smaller reduction in the prevalence of memory CTLp (specific for Sendai virus) that were present concurrently in the regional lymph node, indicating that a measure of bystander activation is occurring. The experiments show that respiratory virus infections have no negative impact on established T cell memory, and that there is no phase of transient exhaustion in the acute virus-specific CTLp response in this localized infection.

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Functional analysis of the TCR alpha- beta+ cells that accumulate in the pneumonic lung of influenza virus-infected TCR-alpha-/- mice.

In mice homozygous (-/-) for a targeted TCR-alpha gene disruption, some thymocytes express a cell-surface TCR-beta chain on the cell surface in the absence of a TCR-alpha chain, and a few CD4+CD8- TCR-alpha-beta+ cells accumulate in the peripheral lymphoid organs. We have infected these mutant mice with an influenza A virus to show that large numbers of TCR-beta+ cells (most of which are CD4+) can be retrieved from the pneumonic lung. Both freshly isolated TCR-alpha-beta+ cells and TCR-alpha-beta+ hybridoma cell lines derived from influenza virus-infected mutant mice respond appropriately to stimulation with anti-CD3 epsilon or the Mls-1 superantigen. It thus seems that CD4+ TCR-alpha-beta+ cells in the peripheral lymphoid organs of TCR-alpha mutant mice can signal through their TCR surface complex. However, there are no indications that CD4+ TCR-alpha-beta+ lymphocytes can either recognize a complex between MHC and influenza virus peptide or act as effector or Th cells. The existence and function of such cells in wild-type mice remains to be established.

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Clearance of Sendai virus by CD8+ T cells requires direct targeting to virus-infected epithelium.

Minimal numbers of CD8+ T cells are found in bronchoalveolar lavage (BAL) populations recovered from Sendai virus-infected mice that are homozygous (-/-) for a beta 2-microglobulin (beta 2-m) gene disruption. The prevalence of the CD8+ set was substantially increased in the pneumonic lungs of 8-12-week radiation chimeras made using substantially class I major histocompatibility complex (MHC) glycoprotein-negative beta 2-m (-/-) recipients and normal beta 2-m (+/+) bone marrow. Even so, the CD8+ (but not the CD4+) lymphocyte counts were still much lower than in the (+/+)-->(+/+) controls. The (+/+)-->(+/+) and (+/+)-->(-/-) chimeras cleared Sendai virus and potent virus-immune CD8+ cytotoxic T lymphocytes (CTL) specific for H-2Kb+viral nucleoprotein peptide were found in the BAL from both groups. However, following in vivo depletion of the CD4+ population, only the (+/+)-->(+/+) mice were able to deal with the infection. Similarly, adoptively transferred, H-2Kb-restricted CD8+ T cells from previously-primed (+/+) mice also failed to clear virus from the lungs of (+/+)-->(-/-) chimeras infected within 2 weeks of reconstitution with bone marrow, though they were effective in the (+/+)-->(+/+) controls. Sendai virus-immune CD8+ T cells are thus unable to eliminate virus-infected beta 2-m (-/-) lung epithelial cells that might be thought to be expressing very small amounts of either isolated class I heavy chain, or class I MHC glycoprotein that has bound beta 2-m derived from beta 2-m (+/+) T cells or macrophages present in the pneumonic lung. Furthermore, the CD8+ CTL that are being exposed to beta 2-m (+/+) stimulators in the BAL population cannot operate in some bystander mode to clear virus from respiratory epithelium.

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