4.7 Article

Sialic acid catabolism by N-acetylneuraminate pyruvate lyase is essential for muscle function

期刊

JCI INSIGHT
卷 3, 期 24, 页码 -

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/jci.insight.122373

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资金

  1. Natural Sciences and Engineering Research Council of Canada [RGPIN 05389-14]
  2. Brain Canada Foundation
  3. Health Canada [PSG14-3505]
  4. Canada Foundation for Innovation [26233]
  5. BC Children's Hospital Foundation
  6. Genome BC [SOF-195]
  7. Canadian Institutes of Health Research [301221, PJT-148863]
  8. Rare Diseases Network Foundation [27R21814]
  9. Michael Smith Foundation for Health Research Scholar Award
  10. Dutch Organization for Scientific Research
  11. ZONMW (Medium Investment Grant) [40-00506-98-9001]
  12. ZONMW (VIDI Grant) [91713359]
  13. European Union's Horizon 2020 research and innovation program (EUROCDG-2) under the ERA-NET Cofund action [643578]

向作者/读者索取更多资源

Sialic acids are important components of glycoproteins and glycolipids essential for cellular communication, infection, and metastasis. The importance of sialic acid biosynthesis in human physiology is well illustrated by the severe metabolic disorders in this pathway. However, the biological role of sialic acid catabolism in humans remains unclear. Here, we present evidence that sialic acid catabolism is important for heart and skeletal muscle function and development in humans and zebrafish. In two siblings, presenting with sialuria, exercise intolerance/muscle wasting, and cardiac symptoms in the brother, compound heterozygous mutations [chr1: 182775324C>T (c. 187C>T; p.Arg63Cys) and chr1: 182772897A>G (c. 133A>G; p.Asn45Asp)] were found in the N-acetylneuraminate pyruvate lyase gene (NPL). In vitro, NPL activity and sialic acid catabolism were affected, with a cell-type-specific reduction of N-acetyl mannosamine (ManNAc). A knockdown of NPL in zebrafish resulted in severe skeletal myopathy and cardiac edema, mimicking the human phenotype. The phenotype was rescued by expression of wild-type human NPL but not by the p. Arg63Cys or p. Asn45Asp mutants. Importantly, the myopathy phenotype in zebrafish embryos was rescued by treatment with the catabolic products of NPL: N-acetyl glucosamine (GlcNAc) and ManNAc; the latter also rescuing the cardiac phenotype. In conclusion, we provide the first report to our knowledge of a human defect in sialic acid catabolism, which implicates an important role of the sialic acid catabolic pathway in mammalian muscle physiology, and suggests opportunities for monosaccharide replacement therapy in human patients.

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