A biological guide to glycosaminoglycans: current perspectives and pending questions

Author:

Ricard‐Blum Sylvie1ORCID,Vivès Romain R.2,Schaefer Liliana3,Götte Martin4,Merline Rosetta3,Passi Alberto5,Heldin Paraskevi6,Magalhães Ana78,Reis Celso A.78ORCID,Skandalis Spyros S.9,Karamanos Nikos K.9ORCID,Perez Serge10,Nikitovic Dragana11ORCID

Affiliation:

1. Univ Lyon 1, ICBMS, UMR 5246 University Lyon 1 – CNRS Villeurbanne cedex France

2. Univ. Grenoble Alpes, CNRS, CEA, IBS Grenoble France

3. Institute of Pharmacology and Toxicology Goethe University Frankfurt Germany

4. Department of Gynecology and Obstetrics Münster University Hospital Germany

5. University of Insubria Varese Italy

6. Department of Medical Biochemistry and Microbiology Uppsala University Sweden

7. Instituto de Investigação e Inovação em Saúde Universidade do Porto Portugal

8. ICBAS – Instituto de Ciências Biomédicas Abel Salazar Universidade do Porto Portugal

9. Biochemistry, Biochemical Analysis & Matrix Pathobiology Res. Group, Laboratory of Biochemistry, Department of Chemistry University of Patras Greece

10. Centre de Recherche sur les Macromolécules Végétales University of Grenoble‐Alpes, CNRS France

11. Laboratory of Histology‐Embryology, School of Medicine University of Crete Heraklion Greece

Abstract

Mammalian glycosaminoglycans (GAGs), except hyaluronan (HA), are sulfated polysaccharides that are covalently attached to core proteins to form proteoglycans (PGs). This article summarizes key biological findings for the most widespread GAGs, namely HA, chondroitin sulfate/dermatan sulfate (CS/DS), keratan sulfate (KS), and heparan sulfate (HS). It focuses on the major processes that remain to be deciphered to get a comprehensive view of the mechanisms mediating GAG biological functions. They include the regulation of GAG biosynthesis and postsynthetic modifications in heparin (HP) and HS, the composition, heterogeneity, and function of the tetrasaccharide linkage region and its role in disease, the functional characterization of the new PGs recently identified by glycoproteomics, the selectivity of interactions mediated by GAG chains, the display of GAG chains and PGs at the cell surface and their impact on the availability and activity of soluble ligands, and on their move through the glycocalyx layer to reach their receptors, the human GAG profile in health and disease, the roles of GAGs and particular PGs (syndecans, decorin, and biglycan) involved in cancer, inflammation, and fibrosis, the possible use of GAGs and PGs as disease biomarkers, and the design of inhibitors targeting GAG biosynthetic enzymes and GAG–protein interactions to develop novel therapeutic approaches.

Publisher

Wiley

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