Macrophage metabolic reprogramming presents a therapeutic target in lupus nephritis

Author:

Jing ChenzhiORCID,Castro-Dopico TomasORCID,Richoz Nathan,Tuong Zewen K.ORCID,Ferdinand John R.ORCID,Lok Laurence S. C.ORCID,Loudon Kevin W.,Banham Gemma D.ORCID,Mathews Rebeccah J.,Cader ZaeemORCID,Fitzpatrick Susan,Bashant Kathleen R.,Kaplan Mariana J.ORCID,Kaser Arthur,Johnson Randall S.ORCID,Murphy Michael P.ORCID,Siegel Richard M.,Clatworthy Menna R.

Abstract

IgG antibodies cause inflammation and organ damage in autoimmune diseases such as systemic lupus erythematosus (SLE). We investigated the metabolic profile of macrophages isolated from inflamed tissues in immune complex (IC)-associated diseases, including SLE and rheumatoid arthritis, and following IgG Fcγ receptor cross-linking. We found that human and mouse macrophages undergo a switch to glycolysis in response to IgG IC stimulation, mirroring macrophage metabolic changes in inflamed tissue in vivo. This metabolic reprogramming was required to generate a number of proinflammatory mediators, including IL-1β, and was dependent on mTOR and hypoxia-inducible factor (HIF)1α. Inhibition of glycolysis, or genetic depletion of HIF1α, attenuated IgG IC-induced activation of macrophages in vitro, including primary human kidney macrophages. In vivo, glycolysis inhibition led to a reduction in kidney macrophage IL-1β and reduced neutrophil recruitment in a murine model of antibody-mediated nephritis. Together, our data reveal the molecular mechanisms underpinning FcγR-mediated metabolic reprogramming in macrophages and suggest a therapeutic strategy for autoantibody-induced inflammation, including lupus nephritis.

Funder

China Scholarship Council

RCUK | Medical Research Council

Arthritis Research UK

Wellcome

NIHR Blood and Transplant Research Unit

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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