Sulfate: a neglected (but potentially highly relevant) anion

Author:

den Bakker Emil1ORCID,Smith Desiree E.C.2,Finken Martijn J.J.3,Wamelink Mirjam M.C.2,Salomons Gajja S.24,van de Kamp Jiddeke M.456,Bökenkamp Arend1

Affiliation:

1. 1Department of Pediatric Nephrology, Emma Childrens Hospital, Amsterdam UMC, Amsterdam, the Netherlands

2. 2Department of Metabolic Diseases, Amsterdam UMC, Amsterdam, the Netherlands

3. 3Department of Pediatric Endocrinology, Emma Childrens Hospital, Amsterdam UMC, Amsterdam, the Netherlands

4. 4Amsterdam Gastroenterology Endocrinology Metabolism, Amsterdam UMC, Amsterdam, the Netherlands

5. 5Amsterdam Reproduction and Development, Amsterdam UMC, Amsterdam, the Netherlands

6. 6Department of Human Genetics, Amsterdam UMC, Amsterdam, the Netherlands

Abstract

Abstract Sulfate is an important anion as sulfonation is essential in modulation of several compounds, such as exogens, polysaccharide chains of proteoglycans, cholesterol or cholesterol derivatives and tyrosine residues of several proteins. Sulfonation requires the presence of both the sulfate donor 3′-phosphoadenosine-5′-phosphosulfate (PAPS) and a sulfotransferase. Genetic disorders affecting sulfonation, associated with skeletal abnormalities, impaired neurological development and endocrinopathies, demonstrate the importance of sulfate. Yet sulfate is not measured in clinical practice. This review addresses sulfate metabolism and consequences of sulfonation defects, how to measure sulfate and why we should measure sulfate more often.

Publisher

Portland Press Ltd.

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1. Interactions of proteins with heparan sulfate;Essays in Biochemistry;2024-04-22

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