Literature DB >> 9064346

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

R D Cardin1, J W Brooks, S R Sarawar, P C Doherty.   

Abstract

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.

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Year:  1996        PMID: 9064346      PMCID: PMC2192775          DOI: 10.1084/jem.184.3.863

Source DB:  PubMed          Journal:  J Exp Med        ISSN: 0022-1007            Impact factor:   14.307


  48 in total

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2.  Cytokine production in the immune response to murine gammaherpesvirus 68.

Authors:  S R Sarawar; R D Cardin; J W Brooks; M Mehrpooya; R A Tripp; P C Doherty
Journal:  J Virol       Date:  1996-05       Impact factor: 5.103

3.  Murine gammaherpesvirus-induced splenomegaly: a critical role for CD4 T cells.

Authors:  E J Usherwood; A J Ross; D J Allen; A A Nash
Journal:  J Gen Virol       Date:  1996-04       Impact factor: 3.891

Review 4.  AIDS. Viruses, cytokines and Kaposi's sarcoma.

Authors:  D Ganem
Journal:  Curr Biol       Date:  1995-05-01       Impact factor: 10.834

5.  In vitro analysis of the Epstein-Barr virus: host balance in long-term renal allograft recipients.

Authors:  Q Y Yao; A B Rickinson; J S Gaston; M A Epstein
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6.  Cellular events in the lymph node and lung of mice with influenza. Consequences of depleting CD4+ T cells.

Authors:  W Allan; Z Tabi; A Cleary; P C Doherty
Journal:  J Immunol       Date:  1990-05-15       Impact factor: 5.422

7.  Murine herpesvirus 68 is genetically related to the gammaherpesviruses Epstein-Barr virus and herpesvirus saimiri.

Authors:  S Efstathiou; Y M Ho; S Hall; C J Styles; S D Scott; U A Gompels
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8.  In vivo modulation of cytolytic activity and Thy-1 expression in TCR-gamma delta+ intraepithelial lymphocytes.

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Authors:  S Efstathiou; Y M Ho; A C Minson
Journal:  J Gen Virol       Date:  1990-06       Impact factor: 3.891

10.  Lack of MHC class I complex expression has no effect on spread and control of cytomegalovirus infection in vivo.

Authors:  B Polić; S Jonjić; I Pavić; I Crnković; I Zorica; H Hengel; P Lucin; U H Koszinowski
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  217 in total

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Authors:  J P Christensen; P C Doherty
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3.  CD4(+) T cell-mediated control of a gamma-herpesvirus in B cell-deficient mice is mediated by IFN-gamma.

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Journal:  Proc Natl Acad Sci U S A       Date:  1999-04-27       Impact factor: 11.205

4.  Analysis of virus-specific CD4(+) t cells during long-term gammaherpesvirus infection.

Authors:  E Flaño; D L Woodland; M A Blackman; P C Doherty
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5.  Disruption of gammaherpesvirus 68 gene 50 demonstrates that Rta is essential for virus replication.

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6.  Compromised influenza virus-specific CD8(+)-T-cell memory in CD4(+)-T-cell-deficient mice.

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7.  Cytotoxic HIV-1 p55gag-specific CD4+ T cells produce HIV-inhibitory cytokines and chemokines.

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8.  Immature and transitional B cells are latency reservoirs for a gammaherpesvirus.

Authors:  Carrie B Coleman; Michael S Nealy; Scott A Tibbetts
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9.  Complete sequence and genomic analysis of murine gammaherpesvirus 68.

Authors:  H W Virgin; P Latreille; P Wamsley; K Hallsworth; K E Weck; A J Dal Canto; S H Speck
Journal:  J Virol       Date:  1997-08       Impact factor: 5.103

10.  Antigen-specific CD4 T-cell help rescues exhausted CD8 T cells during chronic viral infection.

Authors:  Rachael D Aubert; Alice O Kamphorst; Surojit Sarkar; Vaiva Vezys; Sang-Jun Ha; Daniel L Barber; Lilin Ye; Arlene H Sharpe; Gordon J Freeman; Rafi Ahmed
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