The circadian clock influences T cell responses to vaccination by regulating dendritic cell antigen processing

Author:

Cervantes-Silva Mariana P.,Carroll Richard G.ORCID,Wilk Mieszko M.ORCID,Moreira Diana,Payet Cloe A.,O’Siorain James R.,Cox Shannon L.,Fagan Lauren E.,Klavina Paula A.ORCID,He Yan,Drewinski Tabea,McGinley Alan,Buel Sharleen M.,Timmons George A.,Early James O.,Preston Roger J. S.,Hurley Jennifer M.,Finlay David K.ORCID,Schoen IngmarORCID,Javier Sánchez-García F.,Mills Kingston H. G.,Curtis Annie M.ORCID

Abstract

AbstractDendritic cells play a key role in processing and presenting antigens to naïve T cells to prime adaptive immunity. Circadian rhythms are known to regulate many aspects of immunity; however, the role of circadian rhythms in dendritic cell function is still unclear. Here, we show greater T cell responses when mice are immunised in the middle of their rest versus their active phase. We find a circadian rhythm in antigen processing that correlates with rhythms in both mitochondrial morphology and metabolism, dependent on the molecular clock gene,Bmal1. Using Mdivi-1, a compound that promotes mitochondrial fusion, we are able to rescue the circadian deficit in antigen processing and mechanistically link mitochondrial morphology and antigen processing. Furthermore, we find that circadian changes in mitochondrial Ca2+are central to the circadian regulation of antigen processing. Our results indicate that rhythmic changes in mitochondrial calcium, which are associated with changes in mitochondrial morphology, regulate antigen processing.

Funder

Science Foundation Ireland

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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