Immunotherapy targeting isoDGR‐protein damage extends lifespan in a mouse model of protein deamidation

Author:

Kalailingam Pazhanichamy1ORCID,Mohd‐Kahliab Khalilatul‐Hanisah1,Ngan SoFong Cam2,Iyappan Ranjith2ORCID,Melekh Evelin2ORCID,Lu Tian3,Zien Gan Wei1,Sharma Bhargy1ORCID,Guo Tiannan3ORCID,MacNeil Adam J2ORCID,MacPherson Rebecca EK2ORCID,Tsiani Evangelia Litsa2,O'Leary Deborah D2,Lim Kah Leong4ORCID,Su I Hsin1,Gao Yong‐Gui1ORCID,Richards A Mark56ORCID,Kalaria Raj N7,Chen Christopher P8ORCID,McCarthy Neil E9ORCID,Sze Siu Kwan12ORCID

Affiliation:

1. School of Biological Sciences Nanyang Technological University Singapore Singapore

2. Department of Health Sciences, Faculty of Applied Health Sciences Brock University St. Catharines ON Canada

3. iMarker Lab, Westlake Laboratory of Life Sciences and Biomedicine, Key Laboratory of Structural Biology of Zhejiang Province, School of Life Sciences Westlake University Hangzhou China

4. Lee Kong Chian School of Medicine Nanyang Technological University Singapore Singapore

5. Department of Cardiology National University Heart Centre Singapore Singapore

6. Department of Cardiology University of Otago Christchurch New Zealand

7. Institute of Neuroscience, Campus for Ageing and Vitality Newcastle University Newcastle upon Tyne UK

8. Memory, Aging and Cognition Centre National University Health System Singapore Singapore

9. Centre for Immunobiology, The Blizard Institute, Bart's and The London School of Medicine and Dentistry Queen Mary University of London London UK

Abstract

AbstractAging results from the accumulation of molecular damage that impairs normal biochemical processes. We previously reported that age‐linked damage to amino acid sequence NGR (Asn‐Gly‐Arg) results in “gain‐of‐function” conformational switching to isoDGR (isoAsp‐Gly‐Arg). This integrin‐binding motif activates leukocytes and promotes chronic inflammation, which are characteristic features of age‐linked cardiovascular disorders. We now report that anti‐isoDGR immunotherapy mitigates lifespan reduction of Pcmt1−/− mouse. We observed extensive accumulation of isoDGR and inflammatory cytokine expression in multiple tissues from Pcmt1−/− and naturally aged WT animals, which could also be induced via injection of isoDGR‐modified plasma proteins or synthetic peptides into young WT animals. However, weekly injection of anti‐isoDGR mAb (1 mg/kg) was sufficient to significantly reduce isoDGR‐protein levels in body tissues, decreased pro‐inflammatory cytokine concentrations in blood plasma, improved cognition/coordination metrics, and extended the average lifespan of Pcmt1−/− mice. Mechanistically, isoDGR‐mAb mediated immune clearance of damaged isoDGR‐proteins via antibody‐dependent cellular phagocytosis (ADCP). These results indicate that immunotherapy targeting age‐linked protein damage may represent an effective intervention strategy in a range of human degenerative disorders.

Funder

Canada Research Chairs

Publisher

Springer Science and Business Media LLC

Subject

Molecular Medicine

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