Circadian control of innate immunity in macrophages by miR-155 targeting Bmal1

Author:

Curtis Anne M.,Fagundes Caio T.,Yang GuangruiORCID,Palsson-McDermott Eva M.,Wochal Paulina,McGettrick Anne F.,Foley Niamh H.,Early James O.,Chen Lihong,Zhang Hanrui,Xue Chenyi,Geiger Sarah S.,Hokamp Karsten,Reilly Muredach P.,Coogan Andrew N.,Vigorito Elena,FitzGerald Garret A.,O’Neill Luke A. J.

Abstract

The response to an innate immune challenge is conditioned by the time of day, but the molecular basis for this remains unclear. In myeloid cells, there is a temporal regulation to induction by lipopolysaccharide (LPS) of the proinflammatory microRNA miR-155 that correlates inversely with levels of BMAL1. BMAL1 in the myeloid lineage inhibits activation of NF-κB and miR-155 induction and protects mice from LPS-induced sepsis. Bmal1 has two miR-155–binding sites in its 3′-UTR, and, in response to LPS, miR-155 binds to these two target sites, leading to suppression of Bmal1 mRNA and protein in mice and humans. miR-155 deletion perturbs circadian function, gives rise to a shorter circadian day, and ablates the circadian effect on cytokine responses to LPS. Thus, the molecular clock controls miR-155 induction that can repress BMAL1 directly. This leads to an innate immune response that is variably responsive to challenges across the circadian day.

Funder

EC | European Research Council

Science Foundation Ireland

HHS | NIH | National Heart, Lung, and Blood Institute

European Commission

Ministry of Science, Technology and Innovation | Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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