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November 1, 1998The Journal of Immunology320 citationsOpen Access

Apoptotic Death of CD8+ T Lymphocytes After Immunization: Induction of a Suppressive Population of Mac-1+/Gr-1+ Cells

VBVincenzo BronteMWMichael WangWOWillem W. Overwijk

Key Points

  • To determine the mechanism causing secondary effector suppression and cell death in antigen-specific CD8+ T cells following immunization with potent viral vectors.
  • Immunized mice with recombinant vaccinia virus encoding target antigen and IL-2.
  • Assessed antigen-specific cytolytic activity and apoptosis in splenocytes restimulated ex vivo at early time points.
  • Evaluated the dependency on Fas receptor (CD95) signaling and tested the effect of depleting Mac-1+/Gr-1+ cells in vitro and in vivo.
  • Immunogens generating the highest initial cytolytic capacity at day 6 produced the weakest secondary immune responses after early restimulation.
  • Restimulated CD8+ T cells underwent apoptosis that was independent of Fas receptor (CD95) engagement.
  • Selective depletion of Mac-1+/Gr-1+ splenocytes in vitro or in vivo completely abrogated CD8+ T cell suppression and apoptosis.

Abstract

Following an infection or immunization, a primary CD8+ T cell response generally rises then falls rapidly before giving rise to a "memory" response. When we immunized mice with recombinant viral immunogens optimized to enhance the lytic capability of CD8+ T cells, we measured a profound depression in Ag-specific effector function after early restimulation. Indeed, a "mirror image" cytolytic capability was observed: the most powerful immunogens, as measured by cytolytic capacity 6 days after immunization, elicited the weakest secondary immune response when evaluated following an additional 6 days after restimulation. To understand the mechanism of this suppression, we examined the fate of splenocytes immunized with a vaccinia virus encoding Ag and IL-2 then restimulated ex vivo. We found that these splenocytes underwent an apoptotic cell death, upon early restimulation, that was not dependent on the engagement of the FasR (CD95). Unlike previously described mechanisms of "propriocidal cell death" and "clonal exhaustion," the cell death we observed was not an inherent property of the CD8+ T cells but rather was due to a population of splenocytes that stained positive for both the Mac-1 and Gr-1 surface markers. Deletion of these cells in vitro or in vivo completely abrogated the observed suppression of cytolytic reactivity of Ag-specific CD8+ T cells. These observations could account for the apparent absence of Ag-specific immune responses after some current vaccination regimens employing powerful immunogens. Finally, our results may shed new light on a mechanism for the suppression of CD8+ T cell responses and its effect on vaccine efficacy and on immune memory.

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Cite This Study

Bronte et al. (1998) studied this question.

synapsesocial.com/papers/69dd0f7c8cc25b5e451335c5https://doi.org/10.4049/jimmunol.161.10.5313
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