Statin-mediated reduction in mitochondrial cholesterol primes an anti-inflammatory response in macrophages by upregulating Jmjd3

Author:

Salloum Zeina1ORCID,Dauner Kristin1,Li Yun-feng2,Verma Neha1,Valdivieso-González David34,Almendro-Vedia Víctor34ORCID,Zhang John D1,Nakka Kiran5ORCID,Chen Mei Xi56,McDonald Jeffrey7,Corley Chase D7,Sorisky Alexander18,Song Bao-Liang2,López-Montero Iván34ORCID,Luo Jie2,Dilworth Jeffrey F568,Zha Xiaohui19ORCID

Affiliation:

1. Chronic Disease Program, Ottawa Hospital Research Institute

2. College of Life Sciences, Wuhan University

3. Departamento Química Física, Universidad Complutense de Madrid, Avda

4. Instituto de Investigación Biomédica Hospital Doce de Octubre (imas12)

5. Sprott Center for Stem Cell Research, Regenerative Medicine Program, Ottawa Hospital Research Institute

6. Department of Cell and Regenerative Biology, University of Wisconsin

7. Department of Molecular Genetics, The University of Texas Southwestern Medical Center

8. Department of Cellular and Molecular Medicine, University of Ottawa

9. Departments of Medicine and of Biochemistry, Microbiology & Immunology, University of Ottawa

Abstract

Statins are known to be anti-inflammatory, but the mechanism remains poorly understood. Here, we show that macrophages, either treated with statin in vitro or from statin-treated mice, have reduced cholesterol levels and higher expression of Jmjd3, a H3K27me3 demethylase. We provide evidence that lowering cholesterol levels in macrophages suppresses the adenosine triphosphate (ATP) synthase in the inner mitochondrial membrane and changes the proton gradient in the mitochondria. This activates nuclear factor kappa-B (NF-κB) and Jmjd3 expression, which removes the repressive marker H3K27me3. Accordingly, the epigenome is altered by the cholesterol reduction. When subsequently challenged by the inflammatory stimulus lipopolysaccharide (M1), macrophages, either treated with statins in vitro or isolated from statin-fed mice, express lower levels proinflammatory cytokines than controls, while augmenting anti-inflammatory Il10 expression. On the other hand, when macrophages are alternatively activated by IL-4 (M2), statins promote the expression of Arg1, Ym1, and Mrc1. The enhanced expression is correlated with the statin-induced removal of H3K27me3 from these genes prior to activation. In addition, Jmjd3 and its demethylase activity are necessary for cholesterol to modulate both M1 and M2 activation. We conclude that upregulation of Jmjd3 is a key event for the anti-inflammatory function of statins on macrophages.

Funder

Heart and Stroke Foundation of Canada

Canadian Institutes of Health Research

National Institutes of Health

Regional Government of Madrid

Publisher

eLife Sciences Publications, Ltd

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