Immediate Dysfunction of Vaccine-Elicited CD8+ T Cells Primed in the Absence of CD4+ T Cells.
| Authors | |
| Abstract | CD4(+) T cell help is critical for optimal CD8(+) T cell memory differentiation and maintenance in many experimental systems. In addition, many reports have identified reduced primary CD8(+) T cell responses in the absence of CD4(+) T cell help, which often coincides with reduced Ag or pathogen clearance. In this study, we demonstrate that absence of CD4(+) T cells at the time of adenovirus vector immunization of mice led to immediate impairments in early CD8(+) T cell functionality and differentiation. Unhelped CD8(+) T cells exhibited a reduced effector phenotype, decreased ex vivo cytotoxicity, and decreased capacity to produce cytokines. This dysfunctional state was imprinted within 3 d of immunization. Unhelped CD8(+) T cells expressed elevated levels of inhibitory receptors and exhibited transcriptomic exhaustion and anergy profiles by gene set enrichment analysis. Dysfunctional, impaired effector differentiation also occurred following immunization of CD4(+) T cell-deficient mice with a poxvirus vector. This study demonstrates that following priming with viral vectors, CD4(+) T cell help is required to promote both the expansion and acquisition of effector functions by CD8(+) T cells, which is accomplished by preventing immediate dysfunction. |
| Year of Publication | 2016
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| Journal | J Immunol
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| Volume | 197
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| Issue | 5
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| Pages | 1809-22
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| Date Published | 2016 Sep 1
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| ISSN | 1550-6606
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| DOI | 10.4049/jimmunol.1600591
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| PubMed ID | 27448585
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| PubMed Central ID | PMC4991249
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| Links | |
| Grant list | U19 AI078526 / AI / NIAID NIH HHS / United States
U19 AI096040 / AI / NIAID NIH HHS / United States
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