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April 1, 1982The Journal of Experimental Medicine167 citationsOpen Access

Contribution of antigen-presenting cell major histocompatibility complex gene products to the specificity of antigen-induced T cell activation

EHEllen Heber‐KatzRSR H SchwartzLMLA Matis

Key Points

  • The study aims to investigate how MHC gene products influence the specificity of T cell activation by analyzing different mouse strains' responses to cytochrome c.
  • B10.A and B10.A(5R) mice were used to create T cell hybridomas specific to cytochrome c fragments.
  • Cross-reactivity patterns were analyzed by stimulating immune lymph node T cells with cytochrome c fragments from various species.
  • Response to major histocompatibility complex (MHC)-restricted antigens was evaluated using antigen-presenting cells (APC) from both mouse strains.
  • T cell hybridomas secreting interleukin 2 were generated, showing responsiveness to cytochrome c fragments.
  • The cross-reactivity patterns of T cell clones matched those of the whole lymph node population.
  • T cell clones displayed different specificities when tested with APC from different genotypes, highlighting the role of APC genotype in T cell activation.

Abstract

Previous studies from our laboratory showed that B 10.A mice are high responders to pigeon cytochrome c fragment 81-104, whereas'B 10.A(5R) mice are low responders. In the present studies, the C-terminal cyanogen bromide cleavage fragment and homologous synthetic peptides of tobacco horn worm moth cytochrome c were shown to be immunogenic in both B10.A and B10.A(5R) mice. These strains, however, showed different patterns of cross-reactivity when immune lymph node T cells were stimulated with cytochrome c fragments from other species. To examine the two patterns of responsiveness at a clonal level, cytochrome c fragment-specific T cell hybridomas were made and found to secrete interleukin 2 in response to antigen. The patterns of cross- reactivity of these B 10.A and B 10.A(5R) clones were similar to that seen in the whole lymph node population. Surprisingly, when these clones were tested for major histocompatibility complex (MHC)-restricted antigen recognition, they were all found to respond to antigen with both B10.A and B10.A(5R) antigen-presenting cells (APC). Furthermore, the cross-reactivity pattern appeared to be largely determined by the genotype of the APC, not the genotype of the T cell clone. That is, a given T cell clone displayed a different fine specificity when assayed with B10.A or B10.A(5R) APC. This observation indicates that the APC MHC gene product and antigen interact during the stimulation of the T cell response and that as a consequence the specificity of antigen-induced T cell activation is influenced by these MHC gene products. (During the preparation of this manuscript it has come to our attention that results similar to our own, concerning the fine specificity of cytotoxic T cell clones, have been obtained by Dr. T. R. Hunig and Dr. M. J. Bevan, Massachusetts Institute of Technology, Boston, MA. T. R. Hunig and M. J. Bevan. 1981. Specificity of T-cell clones illustrates altered self hypothesis. Nature. 294:460.)

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Cite This Study

Heber‐Katz et al. (1982) studied this question.

synapsesocial.com/papers/6a0ff6a1fb2817e31dfcd970https://doi.org/10.1084/jem.155.4.1086
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