Glycogen-fuelled metabolism supports rapid mucosal-associated invariant T cell responses

Author:

Cassidy Féaron C.12ORCID,Kedia-Mehta Nidhi1ORCID,Bergin Ronan1,Woodcock Andrea1ORCID,Berisha Ardena1ORCID,Bradley Ben1,Booth Eva1,Jenkins Benjamin J.3ORCID,Ryan Odhrán K.1,Jones Nicholas3ORCID,Sinclair Linda V.4,O’Shea Donal5,Hogan Andrew E.12

Affiliation:

1. Kathleen Lonsdale Institute for Human Health Research, Maynooth University, Maynooth, Kildare W23 F2H6, Ireland

2. National Children’s Research Centre, D12 N512 Dublin 12, Ireland

3. Institute of Life Science, Swansea University Medical School, Swansea SA2 8PP, United Kingdom

4. Division of Cell Signaling and Immunology, School of Life Sciences, University of Dundee, Dundee DD1 5EH, United Kingdom

5. St Vincent’s University Hospital & University College Dublin, D04 T6F4 Dublin 4, Ireland

Abstract

Mucosal-associated invariant T (MAIT) cells are a subset of unconventional T cells which recognize a limited repertoire of ligands presented by the MHC class-I like molecule MR1. In addition to their key role in host protection against bacterial and viral pathogens, MAIT cells are emerging as potent anti-cancer effectors. With their abundance in human, unrestricted properties, and rapid effector functions MAIT cells are emerging as attractive candidates for immunotherapy. In the current study, we demonstrate that MAIT cells are potent cytotoxic cells, rapidly degranulating and inducing target cell death. Previous work from our group and others has highlighted glucose metabolism as a critical process for MAIT cell cytokine responses at 18 h. However, the metabolic processes supporting rapid MAIT cell cytotoxic responses are currently unknown. Here, we show that glucose metabolism is dispensable for both MAIT cell cytotoxicity and early (<3 h) cytokine production, as is oxidative phosphorylation. We show that MAIT cells have the machinery required to make (GYS-1) and metabolize (PYGB) glycogen and further demonstrate that that MAIT cell cytotoxicity and rapid cytokine responses are dependent on glycogen metabolism. In summary, we show that glycogen-fueled metabolism supports rapid MAIT cell effector functions (cytotoxicity and cytokine production) which may have implications for their use as an immunotherapeutic agent.

Funder

National Children's Research Centre

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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