Carbomer-based adjuvant elicits CD8 T-cell immunity by inducing a distinct metabolic state in cross-presenting dendritic cells

Author:

Lee Woojong,Kingstad-Bakke Brock,Paulson Brett,Larsen AutumnORCID,Overmyer KatherineORCID,Marinaik Chandranaik B.,Dulli KellyORCID,Toy RandallORCID,Vogel Gabriela,Mueller Katherine P.ORCID,Tweed KelseyORCID,Walsh Alex J.ORCID,Russell Jason,Saha KrishanuORCID,Reyes LeticiaORCID,Skala Melissa C.ORCID,Sauer John-DemianORCID,Shayakhmetov Dmitry M.,Coon JoshuaORCID,Roy Krishnendu,Suresh M.ORCID

Abstract

There is a critical need for adjuvants that can safely elicit potent and durable T cell-based immunity to intracellular pathogens. Here, we report that parenteral vaccination with a carbomer-based adjuvant, Adjuplex (ADJ), stimulated robust CD8 T-cell responses to subunit antigens and afforded effective immunity against respiratory challenge with a virus and a systemic intracellular bacterial infection. Studies to understand the metabolic and molecular basis for ADJ’s effect on antigen cross-presentation by dendritic cells (DCs) revealed several unique and distinctive mechanisms. ADJ-stimulated DCs produced IL-1β and IL-18, suggestive of inflammasome activation, but in vivo activation of CD8 T cells was unaffected in caspase 1-deficient mice. Cross-presentation induced by TLR agonists requires a critical switch to anabolic metabolism, but ADJ enhanced cross presentation without this metabolic switch in DCs. Instead, ADJ induced in DCs, an unique metabolic state, typified by dampened oxidative phosphorylation and basal levels of glycolysis. In the absence of increased glycolytic flux, ADJ modulated multiple steps in the cytosolic pathway of cross-presentation by enabling accumulation of degraded antigen, reducing endosomal acidity and promoting antigen localization to early endosomes. Further, by increasing ROS production and lipid peroxidation, ADJ promoted antigen escape from endosomes to the cytosol for degradation by proteasomes into peptides for MHC I loading by TAP-dependent pathways. Furthermore, we found that induction of lipid bodies (LBs) and alterations in LB composition mediated by ADJ were also critical for DC cross-presentation. Collectively, our model challenges the prevailing metabolic paradigm by suggesting that DCs can perform effective DC cross-presentation, independent of glycolysis to induce robust T cell-dependent protective immunity to intracellular pathogens. These findings have strong implications in the rational development of safe and effective immune adjuvants to potentiate robust T-cell based immunity.

Funder

Presbyterian Historical Society

American Heart Association

National Institutes of Health

NSF Graduate Research Fellowship

National Science Foundation

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

Reference89 articles.

1. Immunological mechanisms of vaccination;B Pulendran;Nat Immunol,2011

2. Antibodies, viruses and vaccines;DR Burton;Nat Rev Immunol,2002

3. Tuberculosis vaccine development: goals, immunological design, and evaluation;DF Hoft;Lancet,2008

4. Potency assays for novel T-cell-inducing vaccines against malaria;A Reyes-Sandoval;Curr Opin Mol Ther,2009

5. Moving ahead an HIV vaccine: use both arms to beat HIV;BD Walker;Nat Med,2011

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