Endonuclease V Regulates Atherosclerosis Through C‐C Motif Chemokine Ligand 2‐Mediated Monocyte Infiltration

Author:

Kong Xiang Yi1ORCID,Huse Camilla12ORCID,Yang Kuan1ORCID,Øgaard Jonas1ORCID,Berges Natalia23,Vik Erik Sebastian3,Nawaz Meh Sameen3,Quiles‐Jiménez Ana12ORCID,Abbas Azhar4,Gregersen Ida12ORCID,Holm Sverre1,Bjerkli Vigdis2,Rashidi Azita1,Fladeby Cathrine3,Suganthan Rajikala3,Sagen Ellen Lund1,Skjelland Mona25,Lång Anna3,Bøe Stig Ove3,Bjørås Magnar36,Aukrust Pål1278,Alseth Ingrun3ORCID,Halvorsen Bente12,Dahl Tuva Børresdatter13ORCID

Affiliation:

1. Research Institute for Internal Medicine Oslo University Hospital, Rikshospitalet Oslo Norway

2. Institute of Clinical Medicine Faculty of Medicine University of Oslo Norway

3. Department of Microbiology Oslo University Hospital, Rikshospitalet Oslo Norway

4. Ostfold Hospital Trust Kalnes Norway

5. Department of Neurology Oslo University Hospital, Rikshospitalet Oslo Norway

6. Department of Clinical and Molecular Medicine Norwegian University of Science and Technology Trondheim Norway

7. Section of Clinical Immunology and Infectious Diseases Oslo University Hospital, Rikshospitalet Oslo Norway

8. K.G. Jebsen, The Faculty of Health Sciences The Arctic University of Tromsø Tromsø Norway

Abstract

Background In cardiovascular diseases, atherosclerotic disorder are the most frequent and important with respect to morbidity and mortality. Inflammation mediated by immune cells is central in all parts of the atherosclerotic progress, and further understanding of the underlying mechanisms is needed. Growing evidence suggests that deamination of adenosine‐to‐inosine in RNA is crucial for a correct immune response; nevertheless, the role of adenosine‐to‐inosine RNA editing in atherogenesis has barely been studied. Several proteins have affinity for inosines in RNA, one being ENDOV (endonuclease V), which binds and cleaves RNA at inosines. Data on ENDOV in atherosclerosis are lacking. Methods and Results Quantitative polymerase chain reaction on ENDOV mRNA showed an increased level in human carotid atherosclerotic plaques compared with control veins. Inosine‐ribonuclease activity as measured by an enzyme activity assay is detected in immune cells relevant for the atherosclerotic process. Abolishing EndoV in atherogenic apolipoprotein E‐deficient ( ApoE −/− ) mice reduces the atherosclerotic plaque burden, both in size and lipid content. In addition, in a brain stroke model, mice without ENDOV suffer less damage than control mice. Finally, lack of EndoV reduces the recruitment of monocytes to atherosclerotic lesions in atherogenic ApoE −/− mice. Conclusions ENDOV is upregulated in human atherosclerotic lesions, and data from mice suggest that ENDOV promotes atherogenesis by enhancing the monocyte recruitment into the atherosclerotic lesion, potentially by increasing the effect of CCL2 activation on these cells.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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