bioRxiv · 10.1101/2022.02.10.479848
CD8 T Cell Memory Inflation is Driven by Latent CMV Infection of Lymphatic Endothelial Cells
Abstract
CMV, a ubiquitous herpesvirus, elicits an extraordinarily large T cell response that is sustained or increases over time, a phenomenon termed memory inflation. Remarkably, even latent, non-productive infection can drive memory inflation. Despite intense research on this phenomenon, the infected cell type(s) involved are unknown. To identify the responsible cell type(s), we designed a Cre-lox murine CMV (MCMV) system, where a spread-deficient ({Delta}gL) virus expresses recombinant SIINFEKL only in Cre+ host cells. We found that latent infection of endothelial cells (ECs), but not dendritic cells (DCs) or hepatocytes, was sufficient to drive CD8 T cell memory inflation. Infection of Lyve-1-Cre and Prox1-CreERT2 mice revealed that amongst EC subsets, infection of lymphatic ECs was sufficient. Genetic ablation of {beta}2m on lymphatic ECs did not prevent inflation, suggesting another unidentified cell type can also present antigen to CD8 T cells during latency. This novel system definitively shows that antigen presentation by lymphatic ECs drives robust CD8 T cell memory inflation. SUMMARYActive T cell immunosurveillance during latent CMV infection results in T cell memory inflation. A novel Cre-lox genetic system for cell-specific antigen expression reveals that lymphatic ECs, but not DCs or hepatocytes, can drive CD8 T cell memory inflation.
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Hill, A. B., Munks, M., Rott, K., Nesterenko, P., Smart, S., Smith, T., Xu, G., Williams, V., Murray, S., Tatum, A.. 2022-02-10. CD8 T Cell Memory Inflation is Driven by Latent CMV Infection of Lymphatic Endothelial Cells. https://doi.org/10.1101/2022.02.10.479848
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