Alterations in glycosaminoglycan biosynthesis associated with the Ehlers-Danlos syndromes

Author:

Syx Delfien1,Delbaere Sarah1,Bui Catherine2,De Clercq Adelbert13,Larson Göran45,Mizumoto Shuji6ORCID,Kosho Tomoki78,Fournel-Gigleux Sylvie2,Malfait Fransiska1ORCID

Affiliation:

1. Department of Biomolecular Medicine, Center for Medical Genetics, Ghent University, Ghent, Belgium

2. CNRS IMoPA, Université de Lorraine, Nancy, France

3. Flanders Research Institute for Agriculture, Fisheries and Food (ILVO), Ostend, Belgium

4. Department of Laboratory Medicine, Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden

5. Laboratory of Clinical Chemistry, Sahlgrenska University Hospital, Gothenburg, Sweden

6. Department of Pathobiochemistry, Faculty of Pharmacy, Meijo University, Nagoya, Japan

7. Center for Medical Genetics, Shinshu University Hospital, Matsumoto, Japan

8. Department of Medical Genetics, Shinshu University School of Medicine, Matsumoto, Japan

Abstract

Proteoglycans consist of a core protein substituted with one or more glycosaminoglycan (GAG) chains and execute versatile functions during many physiological and pathological processes. The biosynthesis of GAG chains is a complex process that depends on the concerted action of a variety of enzymes. Central to the biosynthesis of heparan sulfate (HS) and chondroitin sulfate/dermatan sulfate (CS/DS) GAG chains is the formation of a tetrasaccharide linker region followed by biosynthesis of HS or CS/DS-specific repeating disaccharide units, which then undergo modifications and epimerization. The importance of these biosynthetic enzymes is illustrated by several severe pleiotropic disorders that arise upon their deficiency. The Ehlers-Danlos syndromes (EDS) constitute a special group among these disorders. Although most EDS types are caused by defects in fibrillar types I, III, or V collagen, or their modifying enzymes, a few rare EDS types have recently been linked to defects in GAG biosynthesis. Spondylodysplastic EDS (spEDS) is caused by defective formation of the tetrasaccharide linker region, either due to β4GalT7 or β3GalT6 deficiency, whereas musculocontractural EDS (mcEDS) results from deficiency of D4ST1 or DS-epi1, impairing DS formation. This narrative review highlights the consequences of GAG deficiency in these specific EDS types, summarizes the associated phenotypic features and the molecular spectrum of reported pathogenic variants, and defines the current knowledge on the underlying pathophysiological mechanisms based on studies in patient-derived material, in vitro analyses, and animal models.

Funder

Ehlers-Danlos Society

Union Nationale de Syndromes d'Ehlers-Danlos

Université de Lorraine

ESPOIR Caritative Association

Fonds Wetenschappelijk Onderzoek

MEXT | Japan Society for the Promotion of Science

Sveriges Regering

Universiteit Gent

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

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