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Chondroitin / Dermatan Sulfate Modification Enzymes in Zebrafish Development
Department of Organismal Biology, Science for Life Laboratory, Uppsala University, Sweden.
Department of Organismal Biology, Science for Life Laboratory, Uppsala University, Sweden.
Department of Medical Biochemistry and Microbiology, Science for Life Laboratory, Uppsala University, Sweden.
Department of Organismal Biology, Science for Life Laboratory, Uppsala University, Sweden.
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2015 (English)In: PLOS ONE, E-ISSN 1932-6203, Vol. 10, no 3, article id e0121957Article in journal (Refereed) Published
Abstract [en]

Chondroitin/dermatan sulfate (CS/DS) proteoglycans consist of unbranched sulfated polysaccharide chains of repeating GalNAc-GlcA/IdoA disaccharide units, attached to serine residues on specific proteins. The CS/DS proteoglycans are abundant in the extracellular matrix where they have essential functions in tissue development and homeostasis. In this report a phylogenetic analysis of vertebrate genes coding for the enzymes that modify CS/DS is presented. We identify single orthologous genes in the zebrafish genome for the sulfotransferases chst7, chst11, chst13, chst14, chst15 and ust and the epimerase dse. In contrast, two copies were found for mammalian sulfotransferases CHST3 and CHST12 and the epimerase DSEL, named chst3a and chst3b, chst12a and chst12b, dsela and dselb, respectively. Expression of CS/DS modification enzymes is spatially and temporally regulated with a large variation between different genes. We found that CS/DS 4-O-sulfotransferases and 6-O-sulfotransferases as well as CS/DS epimerases show a strong and partly overlapping expression, whereas the expression is restricted for enzymes with ability to synthesize di-sulfated disaccharides. A structural analysis further showed that CS/DS sulfation increases during embryonic development mainly due to synthesis of 4-O-sulfated GalNAc while the proportion of 6-O-sulfated GalNAc increases in later developmental stages. Di-sulfated GalNAc synthesized by Chst15 and 2-O-sulfated GlcA/IdoA synthesized by Ust are rare, in accordance with the restricted expression of these enzymes. We also compared CS/DS composition with that of heparan sulfate (HS). Notably, CS/DS biosynthesis in early zebrafish development is more dynamic than HS biosynthesis. Furthermore, HS contains disaccharides with more than one sulfate group, which are virtually absent in CS/DS.

Place, publisher, year, edition, pages
Public Library of Science (PLoS), 2015. Vol. 10, no 3, article id e0121957
National Category
Molecular Biology Cell and Molecular Biology
Identifiers
URN: urn:nbn:se:his:diva-25809DOI: 10.1371/journal.pone.0121957ISI: 000352083900161PubMedID: 25793894Scopus ID: 2-s2.0-84925625858OAI: oai:DiVA.org:his-25809DiVA, id: diva2:1995587
Funder
Knut and Alice Wallenberg FoundationSwedish Research Council
Note

CC BY 4.0

This work was supported by grants from the Knut and Alice Wallenberg Foundation (https://www.wallenberg.com/kaw/en), and the Swedish Research Council VR (http://www.vr.se/inenglish.4.12fff4451215cbd83e4800015152.html). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.

Available from: 2025-09-05 Created: 2025-09-05 Last updated: 2025-11-12Bibliographically approved

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Dierker, Tabea

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