Myeloid Ezh2 Deficiency Limits Atherosclerosis Development

Author:

Neele Annette E.,Chen Hung-Jen,Gijbels Marion J. J.,van der Velden Saskia,Hoeksema Marten A.,Boshuizen Marieke C. S.,Van den Bossche Jan,Tool Anton T.,Matlung Hanke L.,van den Berg Timo K.,Lutgens Esther,de Winther Menno P. J.

Abstract

Macrophages define a key component of immune cells present in atherosclerotic lesions and are central regulators of the disease. Since epigenetic processes are important in controlling macrophage function, interfering with epigenetic pathways in macrophages might be a novel approach to combat atherosclerosis. Histone H3K27 trimethylation is a repressive histone mark catalyzed by polycomb repressive complex with EZH2 as the catalytic subunit. EZH2 is described to increase macrophage inflammatory responses by supressing the suppressor of cytokine signaling, Socs3. We previously showed that myeloid deletion of Kdm6b, an enzymes that in contrast to EZH2 removes repressive histone H3K27me3 marks, results in advanced atherosclerosis. Because of its opposing function and importance of EZH2 in macrophage inflammatory responses, we here studied the role of myeloid EZH2 in atherosclerosis. A myeloid-specific Ezh2 deficient mouse strain (Ezh2del) was generated (LysM-cre+ x Ezh2fl/fl) and bone marrow from Ezh2del or Ezh2wt mice was transplanted to Ldlr-/- mice which were fed a high fat diet for 9 weeks to study atherosclerosis. Atherosclerotic lesion size was significantly decreased in Ezh2del transplanted mice compared to control. The percentage of macrophages in the atherosclerotic lesion was similar, however neutrophil numbers were lower in Ezh2del transplanted mice. Correspondingly, the migratory capacity of neutrophils was decreased in Ezh2del mice. Moreover, peritoneal Ezh2del foam cells showed a reduction in the inflammatory response with reduced production of nitric oxide, IL-6 and IL-12. In Conclusion, myeloid Ezh2 deficiency impairs neutrophil migration and reduces macrophage foam cell inflammatory responses, both contributing to reduced atherosclerosis.

Funder

Hartstichting

Fondation Leducq

ZonMw

Horizon 2020

Publisher

Frontiers Media SA

Subject

Immunology,Immunology and Allergy

Cited by 14 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. H3K27Me3 abundance increases fibrogenesis during endothelial-to-mesenchymal transition via the silencing of microRNA-29c;Frontiers in Cardiovascular Medicine;2024-05-07

2. Role of transcriptional cofactors in cardiovascular diseases;Biochemical and Biophysical Research Communications;2024-04

3. Epigenetic regulation of innate immune dynamics during inflammation;Journal of Leukocyte Biology;2024-02-01

4. Therapeutic potential of epigenetic drugs;Epigenetics in Human Disease;2024

5. The role of epigenetics in cardiovascular disease;Epigenetics in Human Disease;2024

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