A monoallelic UXS1 variant associated with short‐limbed short stature

Author:

Rustad Cecilie F.1ORCID,Backe Paul Hoff23ORCID,Jin Chunsheng4ORCID,Merckoll Else5,Tveten Kristian6,Maciej‐Hulme Marissa Lucy7,Karlsson Niclas78,Prescott Trine6ORCID,Sand Elise Sandås9,Woldseth Berit9,Elgstøen Katja Benedikte Prestø9,Holla Øystein L.6ORCID

Affiliation:

1. Centre for Rare Disorders Oslo University Hospital Oslo Norway

2. Department of Microbiology Oslo University Hospital HF, Rikshospitalet Oslo Norway

3. Department of Medical Biochemistry, Institute of Clinical Medicine University of Oslo Oslo Norway

4. Proteomics Core Facility at Sahlgrenska Academy University of Gothenburg Gothenburg Sweden

5. Unilabs Radiology Norway Oslo Norway

6. Department of Medical Genetics Telemark Hospital Trust Skien Norway

7. Department of Life Sciences and Health Oslo Metropolitan University Oslo Norway

8. Department of Medical Biochemistry and Cell Biology, Institute of Biomedicine, Sahlgrenska Academy University of Gothenburg Gothenburg Sweden

9. Department of Medical Biochemistry Oslo University Hospital Oslo Norway

Abstract

AbstractBackgroundSerine residues in the protein backbone of heavily glycosylated proteoglycans are bound to glycosaminoglycans through a tetrasaccharide linker. UXS1 encodes UDP‐glucuronate decarboxylase 1, which catalyzes synthesis of UDP‐xylose, the donor of the first building block in the linker. Defects in other enzymes involved in formation of the tetrasaccharide linker cause so‐called linkeropathies, characterized by short stature, radio‐ulnar synostosis, decreased bone density, congenital contractures, dislocations, and more.MethodsWhole exome sequencing was performed in a father and son who presented with a mild skeletal dysplasia, as well as the father's unaffected parents. Wild‐type and mutant UXS1 were recombinantly expressed in Escherichia coli and purified. Enzyme activity was evaluated by LC–MS/MS. In vivo effects were studied using HeparinRed assay and metabolomics.ResultsThe son had short long bones, normal epiphysis, and subtle metaphyseal changes especially in his legs. The likely pathogenic heterozygous variant NM_001253875.1(UXS1):c.557T>A p.(Ile186Asn) detected in the son was de novo in the father. Purified Ile186Asn‐UXS1, in contrast to the wild‐type, was not able to convert UDP‐glucuronic acid to UDP‐xylose. Plasma glycosaminoglycan levels were decreased in both son and father.ConclusionThis is the first report linking UXS1 to short‐limbed short stature in humans.

Funder

storbyuniversitetet

H2020 Marie Skłodowska-Curie Actions

Helse Sør-Øst RHF

Science for Life Laboratory

Publisher

Wiley

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