| Literature DB >> 32737149 |
Zachariah P Tritz1,2, Robin C Orozco1,2, Courtney S Malo1,2, Katayoun Ayasoufi2, Cori E Fain1,2, Roman H Khadka1,2, Emma N Goddery1,2, Lila T Yokanovich1,2, Megan L Settell1, Michael J Hansen2, Fang Jin2, Kevin D Pavelko2, Larry R Pease2,3, Aaron J Johnson4,5,6.
Abstract
Theiler's murine encephalomyelitis virus (TMEV) infection of the CNS is cleared in C57BL/6 mice by a CD8 T cell response restricted by the MHC class I molecule H-2Db The identity and function of the APC(s) involved in the priming of this T cell response is (are) poorly defined. To address this gap in knowledge, we developed an H-2Db LoxP-transgenic mouse system using otherwise MHC class I-deficient C57BL/6 mice, thereby conditionally ablating MHC class I-restricted Ag presentation in targeted APC subpopulations. We observed that CD11c+ APCs are critical for early priming of CD8 T cells against the immunodominant TMEV peptide VP2121-130 Loss of H-2Db on CD11c+ APCs mitigates the CD8 T cell response, preventing early viral clearance and immunopathology associated with CD8 T cell activity in the CNS. In contrast, animals with H-2Db-deficient LysM+ APCs retained early priming of Db:VP2121-130 epitope-specific CD8 T cells, although a modest reduction in immune cell entry into the CNS was observed. This work establishes a model enabling the critical dissection of H-2Db-restricted Ag presentation to CD8 T cells, revealing cell-specific and temporal features involved in the generation of CD8 T cell responses. Employing this novel system, we establish CD11c+ cells as pivotal to the establishment of acute antiviral CD8 T cell responses against the TMEV immunodominant epitope VP2121-130, with functional implications both for T cell-mediated viral control and immunopathology.Entities:
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Year: 2020 PMID: 32737149 PMCID: PMC7981782 DOI: 10.4049/jimmunol.2000340
Source DB: PubMed Journal: J Immunol ISSN: 0022-1767 Impact factor: 5.422