Pathogenic Variants in Fucokinase Cause a Congenital Disorder of Glycosylation.
case_report · Level V
Where this comes from
- Record sourced from PubMed, PMID 30503518.
- Also identified by DOI 10.1016/j.ajhg.2018.10.021 and PMC identifier 6288200.
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Abstract
FUK encodes fucokinase, the only enzyme capable of converting L-fucose to fucose-1-phosphate, which will ultimately be used for synthesizing GDP-fucose, the donor substrate for all fucosyltransferases. Although it is essential for fucose salvage, this pathway is thought to make only a minor contribution to the total amount of GDP-fucose. A second pathway, the major de novo pathway, involves conversion of GDP-mannose to GDP-fucose. Here we describe two unrelated individuals who have pathogenic variants in FUK and who presented with severe developmental delays, encephalopathy, intractable seizures, and hypotonia. The first individual was compound heterozygous for c.667T>C (p.Ser223Pro) and c.2047C>T (p.Arg683Cys), and the second individual was homozygous for c.2980A>C (p.Lys994Gln). Skin fibroblasts from the first individual confirmed the variants as loss of function and showed significant decreases in total GDP-[<sup>3</sup>H] fucose and [<sup>3</sup>H] fucose-1-phosphate. There was also a decrease in the incorporation of [5,6-<sup>3</sup>H]-fucose into fucosylated glycoproteins. Lys994 has previously been shown to be an important site for ubiquitin conjugation. Here, we show that loss-of-function variants in FUK cause a congenital glycosylation disorder characterized by a defective fucose-salvage pathway.
Medical subject headings
- Congenital Abnormalities
- Genetic Variation
- Phosphotransferases (Alcohol Group Acceptor)