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Published on: February 2, 2024
Post-translational modifications of integrin ligands as pathogenic mechanisms in disease
Cédric Zeltz1, Donald Gullberg1
1Department of Biomedicine and Centre for Cancer Biomarkers, Norwegian Centre of Excellence, University of Bergen, Jonas Lies Vei 91, N-5009 Bergen, Norway.
Abstract:
Protein post-translational modifications like glycation, carbamylation and citrullination increase the functional diversity of the proteome but in disease situations might do more harm than good. Post-translational modifications of ECM proteins are thus appearing as mechanisms, which contribute to tissue dysfunction in chronic kidney disease, in diabetes and in various inflammatory diseases. In chronic renal failure, carbamylation could lead to kidney fibrosis. In diabetes, high glucose levels lead to non-enzymatic glycation and cross-linking of collagens, which contribute to tissue stiffening with consequences for cardiovascular and renal functions. In inflammatory diseases, citrullination deiminates arginine residues with possible consequences for integrin-mediated cell adhesion to RGD- and GFOGER sequences in ECM proteins. Citrullination of fibronectin was in one study suggested to affect cell adhesion by modifying the heparin-binding site and not the RGD site. In a recent publication citrullination of GFOGER sequences in collagen II was demonstrated to selectively affect α10β1 and α11β1 integrin-mediated cell adhesion to collagen II, with consequences for synovial fibroblast and stem cell adhesion and migration. The implications of citrullination affecting integrin binding in disease open up a new area of study and might have implications for the pathogenesis of inflammatory diseases like rheumatoid arthritis and periodontitis.
Insights
Altered protein modifications like citrullination impact cell adhesion in extracellular matrix proteins, potentially worsening inflammatory diseases such as rheumatoid arthritis and periodontitis.
Area of Science:
- Biochemistry
- Cell Biology
- Pathology
Background:
- Post-translational modifications (PTMs) like glycation, carbamylation, and citrullination enhance proteome diversity but can be detrimental in disease.
- PTMs of extracellular matrix (ECM) proteins contribute to tissue dysfunction in chronic kidney disease, diabetes, and inflammatory conditions.
Purpose of the Study:
- To investigate the role of PTMs, specifically citrullination, in ECM protein function and its implications for inflammatory diseases.
- To explore how citrullination affects integrin-mediated cell adhesion to ECM components.
Main Methods:
- Analysis of PTMs in ECM proteins.
- Investigation of citrullination's impact on specific ECM sequences (RGD, GFOGER).
- Assessment of cell adhesion and migration in response to modified ECM proteins.
Main Results:
- Carbamylation may contribute to kidney fibrosis in chronic renal failure.
- Glycation and collagen cross-linking in diabetes lead to tissue stiffening, affecting renal and cardiovascular functions.
- Citrullination of collagen II selectively impairs α10β1 and α11β1 integrin-mediated cell adhesion, affecting synovial fibroblast and stem cell behavior.
Conclusions:
- Citrullination of ECM proteins, particularly collagen II, alters integrin binding and cell adhesion/migration.
- These findings suggest a novel mechanism contributing to the pathogenesis of inflammatory diseases like rheumatoid arthritis and periodontitis.
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