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PMID: 12018460 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S. Review

A mouse model for infectious mononucleosis.

Immunologic research ·Vol. 25 ·No. 3 ·2002-00-00 ·Pages 201-17

Flaño E, Woodland DL, Blackman MA

Abstract

Epstein-Barr virus (EBV) is a ubiquitous human gamma-herpesvirus that establishes life-long latency and is associated with lymphoproliferative disorders and the development of several malignancies. EBV infection is frequently, but not always, associated with the development of a syndrome termed infectious mononucleosis. The recent isolation and characterization of a murine gamma-herpesvirus, MHV-68 (gammaHV-68) has provided the first small animal model for studying immunity and pathogenesis of a gamma-herpesvirus in its natural host. MHV-68 has important biological and genetic similarities with the human gamma-herpesviruses. Following intranasal infection of mice with MHV-68, an acute respiratory infection in the lung develops and is cleared, followed by the establishment of latency. Similar to EBV, MHV-68 latency is largely established in B cells, although other cell types can be latently infected. The establishment of latency correlates with a prominent splenomegaly, polyclonal B cell activation with associated autoantibody production, and CD8+ T cell-dominated peripheral blood lymphocytosis, in many aspects mirroring EBV-induced infectious mononucleosis. There are key differences in the MHV-68- and EBV-induced CD8+ T cell responses however. Whereas the expanded CD8+ T cells associated with EBV-induced mononucleosis are largely the outgrowth of T cells responding to lytic viral epitopes elicited during the acute phase of the response, the CD8+ T cell lymphocytosis associated with MHV-68-induced infectious mononucleosis is dominated by an oligoclonal population of T cells expressing Vbeta4+ T cell receptors that are not reactive to acute viral epitopes. The focus of this article will be to highlight the similarities and differences in the infectious mononucleosis syndrome associated with human and murine gamma-herpesviruses.

MeSH Terms
Animals B-Lymphocytes/immunology,virology CD8-Positive T-Lymphocytes/immunology Disease Models, Animal Herpesviridae Infections/physiopathology,virology Herpesvirus 4, Human/pathogenicity Humans Infectious Mononucleosis/physiopathology,virology Mice Rhadinovirus/pathogenicity Tumor Virus Infections/physiopathology Virus Latency
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Flaño Emilio
Trudeau Institute, Saranac Lake, NY 12983, USA.
Woodland David L
Blackman Marcia A
References (68)
68 references, click to expand
  1. Pathogenesis of murine gammaherpesvirus infection in mice deficient in CD4 and CD8 T cells.
    J Virol. 1993 Sep;67(9):5247-52 PMID: 8394447
  2. Large clonal expansions of CD8+ T cells in acute infectious mononucleosis.
    Nat Med. 1996 Aug;2(8):906-11 PMID: 8705861
  3. Impaired primary T cell responses in L-selectin-deficient mice.
    J Exp Med. 1996 Feb 1;183(2):589-98 PMID: 8627170
  4. Cytokine production in the immune response to murine gammaherpesvirus 68.
    J Virol. 1996 May;70(5):3264-8 PMID: 8627809
  5. Lung epithelial cells are a major site of murine gammaherpesvirus persistence.
    J Exp Med. 1998 Jun 15;187(12):1941-51 PMID: 9625754
  6. L-selectin-deficient mice have impaired leukocyte recruitment into inflammatory sites.
    J Exp Med. 1995 Jun 1;181(6):2259-64 PMID: 7539045
  7. Peripheral T cell receptor repertoire among CD4+ and CD8+ subsets during acute infectious mononucleosis.
    Viral Immunol. 1994;7(3):151-3 PMID: 7598788
  8. Murine gamma-herpesvirus-68: a mouse model for infectious mononucleosis?
    Mol Med Today. 2000 Dec;6(12):488-90 PMID: 11099955
  9. B cell activation by cytomegalovirus.
    J Exp Med. 1983 Dec 1;158(6):2171-6 PMID: 6315853
  10. A gamma-herpesvirus sneaks through a CD8(+) T cell response primed to a lytic-phase epitope.
    Proc Natl Acad Sci U S A. 1999 Aug 3;96(16):9281-6 PMID: 10430934
  11. Single T cell probes for antigen/MHC expression.
    Curr Opin Immunol. 1995 Apr;7(2):258-62 PMID: 7546386
  12. Apparent MHC-independent stimulation of CD8+ T cells in vivo during latent murine gammaherpesvirus infection.
    J Immunol. 1999 Aug 1;163(3):1481-9 PMID: 10415050
  13. T-cell vaccination alters the course of murine herpesvirus 68 infection and the establishment of viral latency in mice.
    J Virol. 1999 Dec;73(12):9849-57 PMID: 10559297
  14. Murine gammaherpesvirus 68 encodes tRNA-like sequences which are expressed during latency.
    J Gen Virol. 1997 Jul;78 ( Pt 7):1675-87 PMID: 9225045
  15. Genetic content and preliminary transcriptional analysis of a representative region of murine gammaherpesvirus 68.
    J Gen Virol. 1997 Jun;78 ( Pt 6):1425-33 PMID: 9191940
  16. Latent murine gamma-herpesvirus infection is established in activated B cells, dendritic cells, and macrophages.
    J Immunol. 2000 Jul 15;165(2):1074-81 PMID: 10878386
  17. Kaposi's sarcoma-associated herpesvirus-like DNA sequences in AIDS-related body-cavity-based lymphomas.
    N Engl J Med. 1995 May 4;332(18):1186-91 PMID: 7700311
  18. Lyphocyte migration in L-selectin-deficient mice. Altered subset migration and aging of the immune system.
    J Immunol. 1996 Aug 1;157(3):1096-106 PMID: 8757614
  19. Requirement for CD40 ligand, CD4(+) T cells, and B cells in an infectious mononucleosis-like syndrome.
    J Virol. 1999 Nov;73(11):9650-4 PMID: 10516078
  20. CD4(+) T cell-mediated control of a gamma-herpesvirus in B cell-deficient mice is mediated by IFN-gamma.
    Proc Natl Acad Sci U S A. 1999 Apr 27;96(9):5135-40 PMID: 10220431
  21. Analysis of the virus-specific and nonspecific B cell response to a persistent B-lymphotropic gammaherpesvirus.
    J Immunol. 2000 Feb 15;164(4):1820-8 PMID: 10657630
  22. T-cell receptor heterogeneity among Epstein-Barr virus-stimulated T-cell populations.
    Virology. 1993 Sep;196(1):179-89 PMID: 8395113
  23. Murine gammaherpesvirus-induced splenomegaly: a critical role for CD4 T cells.
    J Gen Virol. 1996 Apr;77 ( Pt 4):627-30 PMID: 8627250
  24. Pathogenesis of murine gammaherpesvirus-68 infection in interleukin-6-deficient mice.
    Virology. 1998 Sep 30;249(2):359-66 PMID: 9791027
  25. The MHC class I-restricted T cell response to Sendai virus infection in C57BL/6 mice: a single immunodominant epitope elicits an extremely diverse repertoire of T cells.
    Int Immunol. 1994 Nov;6(11):1767-75 PMID: 7865469
  26. Murine gamma-herpesvirus infection causes V(beta)4-specific CDR3-restricted clonal expansions within CD8(+) peripheral blood T lymphocytes.
    Int Immunol. 2000 Aug;12(8):1193-204 PMID: 10917894
  27. Absence of splenic latency in murine gammaherpesvirus 68-infected B cell-deficient mice.
    J Gen Virol. 1996 Nov;77 ( Pt 11):2819-25 PMID: 8922476
  28. Requirement for CD4+ T cells in V beta 4+CD8+ T cell activation associated with latent murine gammaherpesvirus infection.
    J Immunol. 1999 Sep 15;163(6):3403-8 PMID: 10477611
  29. Complete sequence and genomic analysis of murine gammaherpesvirus 68.
    J Virol. 1997 Aug;71(8):5894-904 PMID: 9223479
  30. Interactions of murine gammaherpesvirus 68 with B and T cell lines.
    Virology. 1993 Apr;193(2):825-33 PMID: 8460488
  31. Unraveling immunity to gamma-herpesviruses: a new model for understanding the role of immunity in chronic virus infection.
    Curr Opin Immunol. 1999 Aug;11(4):371-9 PMID: 10448140
  32. Identification of herpesvirus-like DNA sequences in AIDS-associated Kaposi's sarcoma.
    Science. 1994 Dec 16;266(5192):1865-9 PMID: 7997879
  33. Immunological control of a murine gammaherpesvirus independent of CD8+ T cells.
    J Gen Virol. 1999 Feb;80 ( Pt 2):477-83 PMID: 10073710
  34. Murine gamma-herpesvirus 68 glycoprotein 150 protects against virus-induced mononucleosis: a model system for gamma-herpesvirus vaccination.
    Vaccine. 1999 Jan;17(2):152-7 PMID: 9987149
  35. An Epstein-Barr virus-associated superantigen.
    J Exp Med. 1996 Sep 1;184(3):971-80 PMID: 9064357
  36. Virus-specific CD8(+) T cell numbers are maintained during gamma-herpesvirus reactivation in CD4-deficient mice.
    Proc Natl Acad Sci U S A. 1998 Dec 22;95(26):15565-70 PMID: 9861009
  37. Progressive loss of CD8+ T cell-mediated control of a gamma-herpesvirus in the absence of CD4+ T cells.
    J Exp Med. 1996 Sep 1;184(3):863-71 PMID: 9064346
  38. Lymphocyte homing and leukocyte rolling and migration are impaired in L-selectin-deficient mice.
    Immunity. 1994 Jul;1(4):247-60 PMID: 7534203
  39. Tuning into immunological dissonance: an experimental model for infectious mononucleosis.
    Curr Opin Immunol. 1997 Aug;9(4):477-83 PMID: 9287187
  40. Four tRNA-like sequences and a serpin homologue encoded by murine gammaherpesvirus 68 are dispensable for lytic replication in vitro and latency in vivo.
    J Gen Virol. 1998 Jan;79 ( Pt 1):149-53 PMID: 9460936
  41. Murine gammaherpesvirus 68: a model for the study of gammaherpesvirus pathogenesis.
    Trends Microbiol. 1998 Jul;6(7):276-82 PMID: 9717216
  42. Kinetic analysis of the specific host response to a murine gammaherpesvirus.
    J Virol. 1998 Feb;72(2):943-9 PMID: 9444986
  43. Murine gammaherpesvirus 68 establishes a latent infection in mouse B lymphocytes in vivo.
    J Gen Virol. 1992 Dec;73 ( Pt 12):3275-9 PMID: 1469366
  44. Natural history of murine gamma-herpesvirus infection.
    Philos Trans R Soc Lond B Biol Sci. 2001 Apr 29;356(1408):569-79 PMID: 11313012
  45. Isolation of five strains of herpesviruses from two species of free living small rodents.
    Acta Virol. 1980 Dec;24(6):468 PMID: 6111210
  46. Epstein-Barr virus-transformed lymphocytes produce monoclonal autoantibodies that react with antigens in multiple organs.
    J Virol. 1984 Nov;52(2):722-5 PMID: 6092698
  47. Virus-specific CD8+ T-cell responses in mice transgenic for a T-cell receptor beta chain selected at random.
    J Virol. 1994 May;68(5):3065-70 PMID: 7908699
  48. Virological and pathological features of mice infected with murine gamma-herpesvirus 68.
    J Gen Virol. 1992 Sep;73 ( Pt 9):2347-56 PMID: 1328491
  49. Inhibition of MHC class I-restricted antigen presentation by gamma 2-herpesviruses.
    Proc Natl Acad Sci U S A. 2000 Jul 18;97(15):8455-60 PMID: 10890918
  50. LacZ inducible, antigen/MHC-specific T cell hybrids.
    Int Immunol. 1994 Mar;6(3):369-76 PMID: 8186188
  51. Analysis of virus-specific CD4(+) t cells during long-term gammaherpesvirus infection.
    J Virol. 2001 Aug;75(16):7744-8 PMID: 11462049
  52. Pathogenesis of an infectious mononucleosis-like disease induced by a murine gamma-herpesvirus: role for a viral superantigen?
    J Exp Med. 1997 May 5;185(9):1641-50 PMID: 9151901
  53. Infection of intestinal epithelial cells and development of systemic disease following gastric instillation of murine gammaherpesvirus-68.
    J Gen Virol. 2000 Feb;81(Pt 2):421-9 PMID: 10644841
  54. Changing patterns of dominance in the CD8+ T cell response during acute and persistent murine gamma-herpesvirus infection.
    Eur J Immunol. 1999 Apr;29(4):1059-67 PMID: 10229071
  55. Macrophages are the major reservoir of latent murine gammaherpesvirus 68 in peritoneal cells.
    J Virol. 1999 Apr;73(4):3273-83 PMID: 10074181
  56. Acute infectious mononucleosis stimulates the selective expression/expansion of V beta 6.1-3 and V beta 7 T cells.
    Blood. 1993 Mar 15;81(6):1521-6 PMID: 8453099
  57. B cells regulate murine gammaherpesvirus 68 latency.
    J Virol. 1999 Jun;73(6):4651-61 PMID: 10233924
  58. The murine gammaherpesvirus-68 M11 protein inhibits Fas- and TNF-induced apoptosis.
    J Gen Virol. 1999 Oct;80 ( Pt 10):2737-40 PMID: 10573168
  59. Direct visualization of antigen-specific CD8+ T cells during the primary immune response to Epstein-Barr virus In vivo.
    J Exp Med. 1998 May 4;187(9):1395-402 PMID: 9565632
  60. A broad spectrum secreted chemokine binding protein encoded by a herpesvirus.
    J Exp Med. 2000 Feb 7;191(3):573-8 PMID: 10662803
  61. Prominent usage of V beta 8.3 T cells in the H-2Db-restricted response to an influenza A virus nucleoprotein epitope.
    J Immunol. 1993 Sep 1;151(5):2658-66 PMID: 7689611
  62. Mature B cells are required for acute splenic infection, but not for establishment of latency, by murine gammaherpesvirus 68.
    J Virol. 1996 Oct;70(10):6775-80 PMID: 8794315
  63. Identification of a gammaherpesvirus selective chemokine binding protein that inhibits chemokine action.
    J Virol. 2000 Aug;74(15):6741-7 PMID: 10888612
  64. Non-antigen-specific B-cell activation following murine gammaherpesvirus infection is CD4 independent in vitro but CD4 dependent in vivo.
    J Virol. 1999 Feb;73(2):1075-9 PMID: 9882308
  65. Lytic cycle T cell epitopes are expressed in two distinct phases during MHV-68 infection.
    J Immunol. 1999 Jul 15;163(2):868-74 PMID: 10395681
  66. Interactions of the murine gammaherpesvirus with the immune system.
    Curr Opin Immunol. 1994 Aug;6(4):560-3 PMID: 7946042
  67. Host and viral genetics of chronic infection: a mouse model of gamma-herpesvirus pathogenesis.
    Curr Opin Microbiol. 1999 Aug;2(4):403-9 PMID: 10458986
  68. Lymphoproliferative disease in mice infected with murine gammaherpesvirus 68.
    Am J Pathol. 1994 Oct;145(4):818-26 PMID: 7943173
Article Info
Journal
Immunologic research
Abbr.
Immunol Res
ISSN
0257-277X
Published
2002-00-00
Pages
201-17
Language
English
Region
United States
NLM ID
8611087
Subset
IM
Grants
NIAID NIH HHS · AI42927 · United States
NCI NIH HHS · P30 CA21765 · United States
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