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PMID: 3018121 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Cooperation between cytotoxic and helper T lymphocytes in protection against lethal Sendai virus infection. Protection by T cells is MHC-restricted and MHC-regulated; a model for MHC-disease associations.

The Journal of experimental medicine ·Vol. 164 ·No. 3 ·1986-09-01 ·Pages 723-38

Kast WM, Bronkhorst AM, de Waal LP, Melief CJ

Abstract

The in vivo importance of class I MHC regulation of the Tc response to a natural pathogenic agent of high virulence was studied on the basis of our previous demonstration of a major difference in the capacity to generate a Sendai virus-specific Tc response between C57BL/6 (B6, H-2b) mice and H-2Kb mutant B6.C-H-2bm1 (bm 1) mice. These two mouse strains differ from each other only in three amino acids in the crucial H-2Kb restriction element for this response. bm 1 mice, in contrast to B6 mice, are Tc nonresponders against this virus, but show Sendai-specific T cell proliferation, antibody production, and DTH reactions, as well as NK cell activity, equal to those of B6 mice. B6, Sendai Tc-deficient bm 1 and T cell-deficient B6 nu/nu mice differ from each other in susceptibility to lethal pneumonia induced by i.n. inoculation of virulent Sendai virus. The lethal dose (LD50) in B6 mice averaged 152 TCID50, in bm 1 mice, 14 TCID50 and in B6 nu/nu mice 0.5 TCID50. The importance of Tc was also shown by the complete protection of B6 nu/nu mice against infection with a lethal virus dose by i.v. injection of a Sendai virus-specific, IL-2-dependent and H-2Kb-restricted B6 Tc clone. In vivo protection by this Tc clone was H-2Kb-restricted. Apart from Tc, an important role for virus-specific Th cells is evident from the difference in susceptibility between bm 1 and B6 nu/nu mice. This conclusion was supported by the demonstration that the mean survival time of B6 nu/nu and bm 1 nu/nu mice could be significantly prolonged, in an I-Ab-restricted manner, by the injection of in vitro-propagated, Sendai-specific B6 or bm 1 Th clones after a lethal dose of Sendai virus, and by the demonstration that inoculation of these Th clones provided help to virus-specific Tc by means of IL-2 production. Strikingly, Th and Tc cooperate in anti-Sendai virus immunity, since permanent survival of lethally infected nu/nu mice was only achieved by inoculation of a mixture of Tc and Th clones or a mixture of a Tc clone and rIL-2. This study provides a unique model for the study of MHC-disease associations.

MeSH Terms
Animals Hypersensitivity, Delayed Killer Cells, Natural/immunology Major Histocompatibility Complex Mice Mice, Inbred C57BL Mice, Nude Parainfluenza Virus 1, Human Paramyxoviridae Infections/immunology T-Lymphocytes/immunology T-Lymphocytes, Cytotoxic/immunology T-Lymphocytes, Helper-Inducer/immunology
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Kast W M
Bronkhorst A M
de Waal L P
Melief C J
References (37)
37 references, click to expand
  1. Murine virus contaminants of leukemia viruses and transplantable tumors.
    J Natl Cancer Inst. 1972 Oct;49(4):1139-43 PMID: 4343473
  2. Susceptibility to murine lymphocytic choriomeningitis maps to class I MHC genes--a model for MHC/disease associations.
    Nature. 1985 Aug 29-Sep 4;316(6031):814-7 PMID: 4033780
  3. Functional subclasses of T lymphocytes bearing different Ly antigens. II. Cooperation between subclasses of Ly+ cells in the generation of killer activity.
    J Exp Med. 1975 Jun 1;141(6):1390-9 PMID: 1092799
  4. Inflammatory process in murine lymphocytic choriomeningitis is maximal in H-2K or H-2D compatible interactions.
    J Immunol. 1976 Jul;117(1):187-90 PMID: 932423
  5. Susceptibility of inbred and outbred mouse strains to Sendai virus and prevalence of infection in laboratory rodents.
    Infect Immun. 1978 Jan;19(1):123-30 PMID: 203530
  6. Ir-genes in H-2 regulate generation of anti-viral cytotoxic T cells. Mapping to K or D and dominance of unresponsiveness.
    J Exp Med. 1978 Aug 1;148(2):592-606 PMID: 212503
  7. Physiological function of major histocompatibility complex macromolecules. Facts and hypotheses.
    Transplantation. 1979 May;27(5):295-7 PMID: 107633
  8. Cooperation between subclass of T lymphocytes in the in vitro generation of cytotoxicity against a mutant H-2K difference. An analysis with anti-Lyt antisera.
    Eur J Immunol. 1979 Jan;9(1):7-12 PMID: 155528
  9. MHC-restricted cytotoxic T cells: studies on the biological role of polymorphic major transplantation antigens determining T-cell restriction-specificity, function, and responsiveness.
    Adv Immunol. 1979;27:51-177 PMID: 92183
  10. Preferential H-2 association in cytotoxic T cell responses to SV40 tumor-associated specific antigens.
    J Immunol. 1980 Apr;124(4):1888-91 PMID: 6154083
  11. Immune response genes control T killer cell response against Moloney tumor antigen cytolysis regulating reactions against the best available H-2 + viral antigen association.
    J Exp Med. 1980 Jun 1;151(6):1468-76 PMID: 6770026
  12. Inability of mice to generate cytotoxic T lymphocytes to vesicular stomatitis virus restricted to H-2Kk or H-2Dk.
    J Immunol. 1981 Feb;126(2):446-51 PMID: 6256440
  13. Genetic control of sensitivity to Moloney leukemia virus in mice. III. The three H-2 linked Rmv genes are immune response genes controlling the antiviral antibody response.
    Eur J Immunol. 1980 Dec;10(12):914-8 PMID: 6781910
  14. Biochemistry of the gene products from murine MHC mutants.
    Annu Rev Genet. 1980;14:241-77 PMID: 7011174
  15. Genes of the H-2 complex regulate the antibody response to murine leukemia virus.
    J Immunol. 1981 Jun;126(6):2355-60 PMID: 6262410
  16. H-2 restricted cytolytic and noncytolytic T cell clones: isolation, specificity and functional analysis.
    Immunol Rev. 1981;54:27-56 PMID: 6166536
  17. Biological properties of an influenza A virus-specific killer T cell clone. Inhibition of virus replication in vivo and induction of delayed-type hypersensitivity reactions.
    J Exp Med. 1981 Aug 1;154(2):225-34 PMID: 6267157
  18. Analysis of H-2 determinants recognized during the induction of H-Y-immune cytotoxic T cells by monoclonal antibodies in vitro.
    J Exp Med. 1981 Aug 1;154(2):563-8 PMID: 6167656
  19. Induction, control and consequences of virus specific cytotoxic T cells.
    Immunol Rev. 1981;58:157-80 PMID: 6796496
  20. Low responsiveness to Dk or Db plus vaccinia virus or to Kk plus lymphocytic choriomeningitis virus assessed by availability of D or K products.
    Tissue Antigens. 1981 May;17(5):507-17 PMID: 6977890
  21. Functional aspects of helper T cell clones.
    Immunobiology. 1982 Mar;161(1-2):107-38 PMID: 6178677
  22. Regulation of the cytotoxic T lymphocyte response against Sendai virus analyzed with H-2 mutants.
    J Immunol. 1983 Mar;130(3):1090-6 PMID: 6185570
  23. Spontaneous H-2 mutants provide evidence that a copy mechanism analogous to gene conversion generates polymorphism in the major histocompatibility complex.
    Proc Natl Acad Sci U S A. 1983 Jan;80(1):242-6 PMID: 6571997
  24. Protection of mice from fatal herpes simplex virus type 1 infection by adoptive transfer of cloned virus-specific and H-2-restricted cytotoxic T lymphocytes.
    J Gen Virol. 1983 Feb;64 (Pt 2):443-7 PMID: 6601180
  25. H-2 control of the cytotoxic antibody response against a newly defined MuLV-related cell-surface antigen: G(B10.A).
    Int J Cancer. 1983 May 15;31(5):617-26 PMID: 6303968
  26. Idiotypic and fluorometric analysis of the antibodies that distinguish the lesion of the I-A mutant B6.C-H-2bm12.
    J Immunol. 1983 Jul;131(1):359-64 PMID: 6190915
  27. Diversity in the biological properties of anti-influenza cytotoxic T cell clones.
    Eur J Immunol. 1983 Sep;13(9):707-11 PMID: 6311565
  28. Nucleotide sequence of mutant I-A beta bm12 gene is evidence for genetic exchange between mouse immune response genes.
    Nature. 1984 Apr 5-11;308(5959):551-3 PMID: 6324001
  29. Specificity and regulation of cytotoxic T-lymphocyte responses analyzed with H-2 mutants.
    Transplant Proc. 1983 Dec;15(4):2086-9 PMID: 6324427
  30. In vivo effector function of influenza virus-specific cytotoxic T lymphocyte clones is highly specific.
    J Exp Med. 1984 Sep 1;160(3):814-26 PMID: 6206190
  31. Biology of cloned cytotoxic T lymphocytes specific for lymphocytic choriomeningitis virus: clearance of virus in vivo.
    J Virol. 1984 Sep;51(3):682-6 PMID: 6332201
  32. Ecotropic and dualtropic mink cell focus-inducing murine leukemia viruses can induce a wide spectrum of H-2 controlled lymphoma types.
    Virology. 1984 Oct 30;138(2):198-211 PMID: 6333756
  33. Mechanism of recovery from acute virus infection. I. Role of T lymphocytes in the clearance of lymphocytic choriomeningitis virus from spleens of mice.
    J Immunol. 1985 Jan;134(1):608-15 PMID: 3871115
  34. Thymus dictates major histocompatibility complex (MHC) specificity and immune response gene phenotype of class II MHC-restricted T cells but not of class I MHC-restricted T cells.
    J Exp Med. 1984 Dec 1;160(6):1752-66 PMID: 6096476
  35. Immune T cells can protect or induce fatal neurological disease in murine lymphocytic choriomeningitis.
    Cell Immunol. 1985 Feb;90(2):401-7 PMID: 3871371
  36. Virus and immune responses: lymphocytic choriomeningitis virus as a prototype model of viral pathogenesis.
    Br Med Bull. 1985 Jan;41(1):70-4 PMID: 3882190
  37. Capacity of sensitized thymus-derived lymphocytes to induce fatal lymphocytic choriomeningitis is restricted by the H-2 gene complex.
    J Immunol. 1975 Jan;114(1 Pt 1):30-3 PMID: 1078677
Article Info
Journal
The Journal of experimental medicine
Abbr.
J Exp Med
ISSN
0022-1007
Published
1986-09-01
Pages
723-38
Language
English
Region
United States
NLM ID
2985109R
PMCID
PMC2188381
Subset
IM
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