Deficiency of myeloid PHD proteins aggravates atherogenesis via macrophage apoptosis and paracrine fibrotic signalling

Author:

van Kuijk Kim123ORCID,Demandt Jasper A F12ORCID,Perales-Patón Javier345,Theelen Thomas L12,Kuppe Christoph3,Marsch Elke12,de Bruijn Jenny12ORCID,Jin Han12,Gijbels Marion J12678,Matic Ljubica9,Mees Barend M E110ORCID,Reutelingsperger Chris P M111ORCID,Hedin Ulf9ORCID,Biessen Erik A L1212,Carmeliet Peter13ORCID,Baker Andrew H114ORCID,Kramann Rafael K315,Schurgers Leon J1311ORCID,Saez-Rodriguez Julio45ORCID,Sluimer Judith C1214ORCID

Affiliation:

1. Cardiovascular Research Institute Maastricht (CARIM), Maastricht University Medical Center (MUMC), Maastricht, Netherlands

2. Department of Pathology, MUMC, P. Debyelaan 25, 6229HX Maastricht, Netherlands

3. Institute of Experimental Medicine and Systems Biology, RWTH Aachen University, Aachen, Germany

4. Institute for Computational Biomedicine, Faculty of Medicine, Heidelberg University, and Heidelberg University Hospital, Bioquant, Heidelberg, Germany

5. Joint Research Centre for Computational Biomedicine (JRC COMBINE), Faculty of Medicine, RWTH Aachen University, Aachen, Germany

6. Department of Molecular Genetics, MUMC, Maastricht, Netherlands

7. Department of Experimental Vascular Biology, Amsterdam UMC, Amsterdam, The Netherlands

8. GROW-School for Oncology and Developmental Biology, MUMC, Maastricht, Netherlands

9. Department of Molecular Medicine and Surgery, Karolinska Institute, Stockholm, Sweden

10. Department of Vascular Surgery, MUMC, Maastricht, Netherlands

11. Department of Biochemistry, MUMC, Maastricht, Netherlands

12. Institute for Molecular Cardiovascular Research, RWTH Aachen University, Aachen, Germany

13. Laboratory of Angiogenesis and Vascular Metabolism, Department of Oncology, KU Leuven, VIB Center for Cancer biology, B-3000 Leuven, Belgium

14. BHF Centre for Cardiovascular Sciences (CVS), University of Edinburgh, Edinburgh, UK

15. Department of Internal Medicine, Nephrology and Transplantation, Erasmus Medical Center, Rotterdam, The Netherlands

Abstract

Abstract Aims Atherosclerotic plaque hypoxia is detrimental for macrophage function. Prolyl hydroxylases (PHDs) initiate cellular hypoxic responses, possibly influencing macrophage function in plaque hypoxia. Thus, we aimed to elucidate the role of myeloid PHDs in atherosclerosis. Methods and results Myeloid-specific PHD knockout (PHDko) mice were obtained via bone marrow transplantation (PHD1ko, PHD3ko) or conditional knockdown through lysozyme M-driven Cre recombinase (PHD2cko). Mice were fed high cholesterol diet for 6–12 weeks to induce atherosclerosis. Aortic root plaque size was significantly augmented 2.6-fold in PHD2cko, and 1.4-fold in PHD3ko compared to controls but was unchanged in PHD1ko mice. Macrophage apoptosis was promoted in PHD2cko and PHD3ko mice in vitro and in vivo, via the hypoxia-inducible factor (HIF) 1α/BNIP3 axis. Bulk and single-cell RNA data of PHD2cko bone marrow-derived macrophages (BMDMs) and plaque macrophages, respectively, showed enhanced HIF1α/BNIP3 signalling, which was validated in vitro by siRNA silencing. Human plaque BNIP3 mRNA was positively associated with plaque necrotic core size, suggesting similar pro-apoptotic effects in human. Furthermore, PHD2cko plaques displayed enhanced fibrosis, while macrophage collagen breakdown by matrix metalloproteinases, collagen production, and proliferation were unaltered. Instead, PHD2cko BMDMs enhanced fibroblast collagen secretion in a paracrine manner. In silico analysis of macrophage-fibroblast communication predicted SPP1 (osteopontin) signalling as regulator, which was corroborated by enhanced plaque SPP1 protein in vivo. Increased SPP1 mRNA expression upon PHD2cko was preferentially observed in foamy plaque macrophages expressing ‘triggering receptor expressed on myeloid cells-2’ (TREM2hi) evidenced by single-cell RNA, but not in neutrophils. This confirmed enhanced fibrotic signalling by PHD2cko macrophages to fibroblasts, in vitro as well as in vivo. Conclusion Myeloid PHD2cko and PHD3ko enhanced atherosclerotic plaque growth and macrophage apoptosis, while PHD2cko macrophages further activated collagen secretion by fibroblasts in vitro, likely via paracrine SPP1 signalling through TREM2hi macrophages.

Funder

Dutch Organization for scientific research

Dutch Heart Foundation

Fondation Leducq transatlantic network of excellence

Bayer AG

British Heart Foundation Chair of Translational Cardiovascular Sciences

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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