Infectious Agents Associated Cancers Epidemiology and Molecular Biology

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  1. Park S, Buck MD, Desai C, Zhang X, Loginicheva E, Martinez J, Freeman ML, Saitoh T, Akira
    S, Guan JL, He YW, Blackman MA, Handley SA, Levine B, Green DR, Reese TA, Artyomov
    MN, Virgin HW (2016) Autophagy genes enhance murine Gammaherpesvirus 68 reactiva-
    tion from latency by preventing virus-induced systemic inflammation. Cell Host Microbe
    19:91–101

  2. Peacock JW, Elsawa SF, Petty CC, Hickey WF, Bost KL (2003) Exacerbation of experimental
    autoimmune encephalomyelitis in rodents infected with murine gammaherpesvirus-68. Eur
    J Immunol 33:1849–1858

  3. Sunil-Chandra NP, Efstathiou S, Arno J, Nash AA (1992) Virological and pathological features
    of mice infected with murine gamma-herpesvirus 68. J Gen Virol 73(Pt 9):2347–2356

  4. Cardin RD, Brooks JW, Sarawar SR, Doherty PC (1996) Progressive loss of CD8+ T cell-
    mediated control of a gamma-herpesvirus in the absence of CD4+ T cells. J  Exp Med
    184:863–871

  5. Cantani A, Mastrantoni F (1989) Recent advances on Epstein-Barr virus infectious mono-
    nucleosis. Riv Eur Sci Med Farmacol 11:41–44

  6. Flano E, Woodland DL, Blackman MA (2002) A mouse model for infectious mononucleosis.
    Immunol Res 25:201–217

  7. Lee BJ, Santee S, Von Gesjen S, Ware CF, Sarawar SR (2000) Lymphotoxin-alpha-deficient
    mice can clear a productive infection with murine gammaherpesvirus 68 but fail to develop
    splenomegaly or lymphocytosis. J Virol 74:2786–2792

  8. Ehtisham S, Sunil-Chandra NP, Nash AA (1993) Pathogenesis of murine gammaherpesvirus
    infection in mice deficient in CD4 and CD8 T cells. J Virol 67:5247–5252

  9. Molloy M, Zhang W, Usherwood E (2010) Mononucleosis and antigen-driven T cell responses
    have different requirements for interleukin-2 signaling in murine gammaherpesvirus infection.
    J Virol 84:10923–10927

  10. Robertson KA, Usherwood EJ, Nash AA (2001) Regression of a murine gammaherpesvirus
    68-positive b-cell lymphoma mediated by CD4 T lymphocytes. J Virol 75:3480–3482

  11. Liang X, Paden CR, Morales FM, Powers RP, Jacob J, Speck SH (2011) Murine gamma-
    herpesvirus immortalization of fetal liver-derived B cells requires both the viral cyclin D
    homolog and latency-associated nuclear antigen. PLoS Pathog 7:e1002220

  12. Liang X, Crepeau RL, Zhang W, Speck SH, Usherwood EJ (2013) CD4 and CD8 T cells
    directly recognize murine gammaherpesvirus 68-immortalized cells and prevent tumor out-
    growth. J Virol 87:6051–6054

  13. Good DJ, Gascoyne RD (2009) Atypical lymphoid hyperplasia mimicking lymphoma.
    Hematol Oncol Clin North Am 23:729–745

  14. Tarakanova VL, Kreisel F, White DW, Virgin HW (2008) Murine gammaherpesvirus 68 genes
    both induce and suppress lymphoproliferative disease. J Virol 82:1034–1039

  15. Peterson PA, Rask L, Ostberg L (1977) Beta2-microglobulin and the major histocompatibility
    complex. Adv Cancer Res 24:115–163

  16. Dunleavy K, Roschewski M, Wilson WH (2012) Lymphomatoid granulomatosis and other
    Epstein-Barr virus associated lymphoproliferative processes. Curr Hematol Malig Rep
    7:208–215

  17. Wilson WH, Kingma DW, Raffeld M, Wittes RE, Jaffe ES (1996) Association of lympho-
    matoid granulomatosis with Epstein-Barr viral infection of B lymphocytes and response to
    interferon-alpha 2b. Blood 87:4531–4537

  18. Lee KS, Groshong SD, Cool CD, Kleinschmidt-DeMasters BK, van Dyk LF (2009) Murine
    gammaherpesvirus 68 infection of IFNgamma unresponsive mice: a small animal model for
    gammaherpesvirus-associated B-cell lymphoproliferative disease. Cancer Res 69:5481–5489

  19. Callan MF, Steven N, Krausa P, Wilson JD, Moss PA, Gillespie GM, Bell JI, Rickinson AB,
    McMichael AJ (1996) Large clonal expansions of CD8+ T cells in acute infectious mono-
    nucleosis. Nat Med 2:906–911


14 MHV68 as a Disease Model

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