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Biomedical subjects

P C Doherty

Publications and source records attributed to P C Doherty.

At least 73 records · Page 4Linked to original sources

CD8+ T cells clear influenza virus by perforin or Fas-dependent processes.

Influenza virus infection is controlled in CD4-depleted mice that are also defective for the expression of either Fas (Fas-/-) or perforin (P-/-). Virus-immune P+/+ and P-/- CD8+ T cells can thus function in, respectively, a Fas-/- or Fas+/+ lung environment. The obvious question is whether the P-/- CD8+ set is effective in Fas-/- mice, a conclusion that would tend to favor cytokine secretion as the mode of virus clearance. Short term chimeras were made with P-/- bone marrow, P+/+ or P-/- T cells, and Fas+/+ or Fas-/- irradiated recipients. While the P+/+ CD8+ population cleared the virus from Fas+/+ and Fas-/- respiratory epithelium, the P-/- effectors were operational only if there was the potential for Fas to be expressed on radiation-resistant lung cells. Target cell destruction mediated via the Fas or perforin pathways is clearly the primary mechanism used by CD8+ T cells to terminate this viral pneumonia.

Animals↗

Pathogenesis of an infectious mononucleosis-like disease induced by a murine gamma-herpesvirus: role for a viral superantigen?

The murine gamma-herpesvirus 68 has many similarities to EBV, and induces a syndrome comparable to infectious mononucleosis (IM). The frequency of activated CD8+ T cells (CD62L(lo)) in the peripheral blood increased greater than fourfold by 21 d after infection of C57BL/6J (H-2(b)) mice, and remained high for at least a further month. The spectrum of T cell receptor usage was greatly skewed, with as many as 75% of the CD8+ T cells in the blood expressing a Vbeta4+ phenotype. Interestingly, the Vbeta4 dominance was also seen, to varying extents, in H-2(k), H-2(d), H-2(u), and H-2(q) strains of mice. In addition, although CD4 depletion from day 11 had no effect on the Vbeta4 bias of the T cells, the Vbeta4+CD8+ expansion was absent in H-2IA(b)-deficient congenic mice. However, the numbers of cycling cells in the CD4 antibody-depleted mice and mice that are CD4 deficient as a consequence of the deletion of MHC class II, were generally lower. The findings suggest that the IM-like disease is driven both by cytokines provided by CD4+ T cells and by a viral superantigen presented by MHC class II glycoproteins to Vbeta4+CD8+ T cells.

Animals↗

Bone marrow can function as a lymphoid organ during a primary immune response under conditions of disrupted lymphocyte trafficking.

In this study we sought to better understand lymphocyte trafficking patterns and the function of secondary lymphoid organs, such as the spleen, during the generation of virus-specific T cell precursors. Treatment of mice with the Mel-14 mAb to CD62L, the lymph node homing receptor, limits trafficking of naive T cells into lymph nodes through high endothelial venules. Administering Mel-14 following respiratory infection with influenza virus forced the generation of primary virus-specific CD4+ and CD8+ T cell precursors from the mediastinal lymph nodes to the spleen. However, splenectomy did not seriously impede virus clearance from the lung and, despite a substantial reduction of the total lymphocyte pool, the acute T cell responses in the regional lymph nodes were largely normal. Mel-14 treatment of splenectomized mice did not affect clonal expansion of the virus-specific T cells in the MLN, while the response in the cervical lymph nodes was still greatly inhibited. More surprisingly, virus-specific T cell precursors were now detected from days 5 to 6 after infection in the bone marrow (BM) of the splenectomized, Mel-14-treated mice. This was not due to contamination with circulating T cells or infection of BM cells because the distribution profiles of precursor T cells for PBL and BM diverged and PCR analysis showed no evidence of virus replication in the BM. It appears that, under these conditions of disrupted lymphocyte trafficking, the BM can supplant the secondary lymphoid tissue either as a site of primary immune response or as a cache for excess T cell precursors.

Animals↗

Consequences of viral infections for lymphocyte compartmentalization and homeostasis.

The immune system has evolved to deal with pathogens. Analysing what happens during the course of infectious processes provides insights into the limits of lymphocyte homeostasis. Virus infections greatly alter normal T- and B-cell prevalence and localization patterns. Any mechanism that 'counts' T cells and B cells seems to be disrupted, at least while antigen persists. There is no simple 'dumping' process that controls numbers in the blood. Though the cell-surface 'language' that determines lymphocyte trafficking patterns must be central to modulating the consequences of infectious diseases, it is far from clear how such interactions maintain the system in reasonable balance.

Animals↗

Tuning into immunological dissonance: an experimental model for infectious mononucleosis.

Virus infections cause a much more profound perturbation of the lymphoid tissue than can be accounted for by the exigencies of the antigen-specific response. The extent of this 'immunological dissonance' is seen most dramatically in mice infected with a persistent gamma-herpesvirus, MHV-68. A profile of massive, continuing proliferation of both T and B cells in the lymph nodes and spleen leads to a dramatic increase in the prevalence of a CD62Llow CD8+ T cell subset in the blood, a pattern first detected two to three weeks after intranasal exposure to the inducing virus. This syndrome, which seems identical to human infectious mononucleosis (IM), persists for a further month or more. Part of the IM-like phase of MHV-68 infection reflects the selective expansion of Vbeta4+ CD8+ T cells, with the Vbeta4 effect being apparent for several different MHC class I H-2 types but not in mice that are deficient in MHC class II glycoprotein expression. Depleting CD4(+) T helper cells in MHV-68-infected mice leads to the decreased proliferation of the CD8+ T cells in the spleen and fewer CD62Llow CD8+ T lymphocytes than would be expected in peripheral blood, but fails to diminish the prominence of the V4beta+ CD8+ population. The results so far of this unique experimental mouse model of IM suggest that both cytokine-mediated effects and a viral superantigen are operating to promote the dramatic expansion and persistence of activated CD8+ T cells in the vascular compartment.

Animals↗

Cell mediated immunity in virus infections.

The discovery of the molecular nature of T cell-mediated immunity is reviewed in a historical context. Current approaches to understanding virus-induced inflammatory processes are described.

Animals↗

Immunological control of murine gammaherpesvirus infection is independent of perforin.

Perforin-mediated cytotoxic T cell killing has been suggested to be of importance in the control of noncytopathic virus infections, based on studies with lymphocytic choriomeningitis virus (LCMV). We examined the role of perforin in a mouse model of gammaherpesvirus infection using transgenic perforin-deficient mice. Previous work from this laboratory has shown that CD8 T cells are essential for the resolution of the acute lung infection and control of latently infected B cells in murine gamma-herpesvirus 68 infection. The absence of perforin did not significantly affect the kinetics of either the lytic lung infection or the latent spleen infection. Lymphocytes from both perforin-deficient and control mice secreted comparable levels of IFN-gamma, IL-10 and IL-6. In addition, lymphocytes from both strains had similar levels of CD3epsilon-dependent cytotoxic activity in the spleen, draining lymph nodes and bronchoalveolar lavage. These data indicate that the lack of perforin has little affect on the ability of mice to control an experimental gammaherpesvirus infection.

Animals↗

Effector CD4+ and CD8+ T-cell mechanisms in the control of respiratory virus infections.

The rules for T-cell-mediated control of viruses that infect via the respiratory mucosae show both common themes and differences, depending on the nature of the pathogen. Virus-specific CD8+ cytotoxic T lymphocytes (CTLs) are the key effectors of virus clearance in mice infected with both negative strand RNA viruses (influenza and Sendai) and a DNA virus, the murine gamma-herpesvirus-68 (MHV-68). Recently completed experiments establish that these activated CD8+ T cells indeed operate primarily via contact-dependent lysis. Perforin-mediated cytotoxicity seems to be the preferred mode, though a Fas-based mechanism can apparently serve as an alternative mechanism. Immune CD4+ T cells functioning in the absence of the CD8+ subset cannot eliminate MHV-68 from lung epithelial cells, are somewhat less efficient than the CD8+ CTLs at clearing the RNA viruses, and are generally ineffectual in mice that lack B lymphocytes. Though cytokine secretion by CD4+ and CD8+ T cells in the virus-infected lung may promote both T-cell extravasation and macrophage activation, such processes are not alone sufficient to deal consistently with any of these infections. However, CD4+ T help is mandatory for an effective B-cell response, and can operate to promote the clonal expansion of virus-specific CD8+ T cells in the lymph nodes and spleen. Furthermore, a concurrent CD4+ T-cell response seems to be essential for maintaining continued CD8+ T-cell surveillance and effector capacity through the persistent, latent phase of MHV-68 infection in B cells. Thus, the evidence to date supports a very traditional view; CD8+ T cells function mainly as killers and the CD4+ T cells as helpers in these respiratory virus infections.

Animals↗

The cytotoxic T-lymphocyte response to Sendai virus is unimpaired in the absence of gamma interferon.

Sendai virus is eliminated from the respiratory tract of gamma interferon (IFN-gamma) -/- BALB/c mice with normal kinetics. The level of virus-specific cytotoxic T-lymphocyte (CTL) activity in the cell population recovered by bronchoalveolar lavage is unimpaired, the prevalence of interleukin-4 (IL-4)-producing cells is increased, and the titers of virus-specific immunoglobulins IgG1 and IgG2b are higher in the IFN-gamma -/- mice. The emergence of this T-helper 2 response profile in both lymphoid tissue and the pneumonic lung has no obvious deleterious consequences. Virus clearance is slightly delayed following depletion of the CD4+ subset, with the effect being similar in magnitude for IFN-gamma -/- and +/+ mice. However, the generation of CTL precursors (CTLp) is diminished in the IFN-gamma -/- (but not +/+) mice in the absence of concurrent CD4+ T help. Apparently the clonal expansion of the CTLp population can be promoted either by a cytokine (perhaps IL-2) produced by the IFN-gamma -/- CD4+ T cells or by IFN-gamma made by other cell types in the +/+ mice.

Animals↗

Modification of the Sendai virus-specific antibody and CD8+ T-cell responses in mice homozygous for disruption of the interleukin-4 gene.

Homozygous disruption (-/-) of the interleukin-4 (IL-4) gene did not obviously modify the severity of Sendai virus infection in the highly susceptible 129/J mouse strain. The virus was cleared from the respiratory tract, and potent cytotoxic T lymphocyte (CTL) effectors were present in the cell population recovered by bronchoalveolar lavage. However, the prevalence of virus-specific CTL precursors (p) was consistently diminished in the spleen and regional lymph nodes of the IL-4 -/- mice at day 7 after infection. Also, virus-specific serum immunoglobulin G1 (IgG1) levels were greatly reduced and few IgG1-producing cells were detected in the lymphoid tissue. The effect on IgG1 class switching was to be expected, but the decrease in CTLp numbers has not been observed previously for a virus-specific immune response.

Animals↗

Gamma interferon is not essential for recovery from acute infection with murine gammaherpesvirus 68.

Murine gammaherpesvirus 68 (MHV-68) when administered intranasally induces high levels of gamma interferon (IFN-gamma) in the lymphoid tissues of infected mice. In order to investigate the role of this cytokine in the immune response to MHV-68, mice which were congenitally deficient in the IFN-gamma gene (IFN-gamma knockout mice) were infected with the virus. Comparison of the courses of the disease in wild-type control and IFN-gamma knockout mice revealed surprisingly little difference. Both groups of mice had cleared infectious virus from the lungs 15 days after infection, although there did appear to be a slight delay in viral clearance in the IFN-gamma knockout mice. In addition, after the initial phase of viral clearance, the lungs of both groups remained clear of replicating virus throughout the course of the experiment, which concluded 34 days after infection. Consistent with these observations, cytotoxic T-cell activities were similar in the two groups of mice. Levels of latent virus were comparable in wild-type and knockout mice over the time course studied. Furthermore, analysis of the numbers, types, and activation status of cells in the lungs, lymph nodes, and spleens of control and knockout mice revealed no striking difference. This suggests that IFN-gamma is not essential for regulating the cell recruitment or proliferation that normally occurs during this viral infection. Apart from the expected lack of IFN-gamma, cytokine profiles were not dramatically altered in IFN-gamma knockout mice, demonstrating that IFN-gamma did not suppress the proliferation or differentiation of Th2 cells during MHV-68 infection. These observations indicate that IFN-gamma plays a nonessential or redundant role in the control of acute infection with MHV-68.

3T3 Cells↗

Lethal synergism between influenza infection and staphylococcal enterotoxin B in mice.

Superantigen hyperactivation of the immune system has variable, sometimes lethal consequences for the host. Here we show that concurrent influenza infection enhanced the effects of the bacterial superantigen staphylococcal enterotoxin B (SEB) in mice. The effect was T cell-dependent, and maximal synergism was observed when SEB was administered 7 days after the virus, a timepoint during infection associated with high viral titers, a vigorous cytotoxic T cell response, and extensive lung pathology. The influenza infection enhanced the SEB-induced cytokine response in terms of higher absolute levels of cytokine, sustained secretion, and localization to the respiratory tract. In particular, TNF and IFN-gamma were implicated in the mechanism of death because their neutralization protected the mice from death, and recombinant IFN-gamma and TNFalpha mimicked the lethal effect of SEB in influenza-infected mice. This lethal synergism between concurrent influenza infection and superantigen exposure points to the danger of secondary bacterial involvement in viral pneumonia, and suggests mechanisms that may contribute to sudden and unexpected death from influenza infection. In addition, these data demonstrate that the in vivo effects of superantigen exposure can be strongly influenced by the immune activation status of the host.

Animals↗

Quantitative analysis of the influenza virus-specific CD4+ T cell memory in the absence of B cells and Ig.

The role of B lymphocytes and their Ig product in the development and maintenance of virus-specific CD4+ T cells has been analyzed in mice homozygous for disruption of the Ig mu gene (mu MT). These mice lack mature B220+ B cells and do not secrete Ig, but generate normal CD8+ cytotoxic T lymphocyte responses and have no difficulty clearing the HKx31 influenza A virus from the infected respiratory tract. Sequential limiting dilution analysis of virus-specific CD4+ T cells established that the frequencies of IL-2-producing T helper cell precursors in the draining lymph nodes and/or spleen from 7 days to 6 mo after infection were essentially similar in mu MT and C57BL/6 (B6) mice. Ag presentation and processing mechanisms involving Ig or B cells are apparently not required to generate virus-specific T helper cell precursors, and Ag-Ig complexes on follicular dendritic cells are not essential for the persistence of virus-specific CD4+ T cell memory. The main difference was that the spleens of the mu MT mice were much smaller than those of the B6 controls, and greater numbers of CD4+ T cells were found consistently in the regional mediastinal lymph nodes. This could be the result of abnormal expression of the lymph node homing receptor (CD62L) on the mu MT CD4+ T cells. However, the profiles of CD62L expression over the long term were comparable for both total and virus-specific CD4+ T cells from the two groups. The diminished role of the mu MT spleen is thus more likely to reflect the absence of germinal centers and/or Ig rather than a disruption of CD62L-mediated T cell trafficking.

Agammaglobulinemia↗

Progressive loss of CD8+ T cell-mediated control of a gamma-herpesvirus in the absence of CD4+ T cells.

A unique experimental model has been developed for dissecting the integrity of CD8+ T cell-mediated immunity to a persistent gammaherpesvirus under conditions of CD4+ T cell deficiency. Respiratory challenge of major histocompatibility complex class II -/- and +/+ C57BL/6J mice with the murine gammaherpesvirus 68 (MHV-68) leads to productive infection of both lung and adrenal epithelial cells. Virus titers peak within 5-10 d, and are no longer detected after day 15. Persistent, latent infection is established concurrently in splenic and lymph node B cells, with higher numbers of MHV-68+ lymphocytes being found in all lymphoid sites analyzed from the +/+ mice concurrent with the massive, but transient splenomegaly that occurred only in this group. From day 17, however, the numbers of infected B lymphocytes were consistently higher in the -/- group, while the frequency of this population diminished progressively in the +/+ controls. Infectious MHV-68 was again detected in the respiratory tract and the adrenals of the -/- (but not the +/+) mice from day 22 after infection. The titers in these sites rose progressively, with the majority of the -/- mice dying between days 120 and 133. Even so, some CD8+ effectors were still functioning as late as 100 d after infection. Depletion of CD8+ T cells at this stage led to higher virus titers in the -/- lung, and to the development of wasting in some of the -/- mice. Elimination of the CD8+ T cells from the +/+ group (day 80) increased the numbers of MHV-68+ cells in the spleen, but did not reactivate the infection in the respiratory tract. The results are consistent with the interpretation that CD8+ T cell-mediated control of this persistent gammaherpesvirus is progressively lost in the absence of the CD4+ T cell subset. This parallels what may be happening in AIDS patients who develop Kaposi's sarcoma and various Epstein Barr virus associated disease processes.

Animals↗

Recombinant polyepitope vaccines for the delivery of multiple CD8 cytotoxic T cell epitopes.

Development of epitope-based CD8 alpha beta CTL vaccines requires effective strategies for codelivery of large numbers of individual epitopes. We have designed an artificial "polyepitope" protein containing 10 contiguous minimal CTL epitopes, which were restricted by five MHC alleles and derived from five viruses, a parasite, and a tumor model. A recombinant vaccinia virus coding for this protein was capable of inducing MHC-restricted primary CTL responses to all 10 epitopes. Mice immunized with this recombinant vaccinia showed protection against murine cytomegalovirus, Sendai virus, and a tumor model. This simple generic approach to multiepitope delivery should find application in CTL-based vaccine design.

Amino Acid Sequence↗