4.8 Article

NANS-mediated synthesis of sialic acid is required for brain and skeletal development

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NATURE GENETICS
卷 48, 期 7, 页码 777-+

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NATURE PORTFOLIO
DOI: 10.1038/ng.3578

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资金

  1. Leenaards Foundation in Lausanne, Switzerland
  2. Faculty of Biology and Medicine of the University of Lausanne
  3. BC Children's Hospital Foundation (Treatable Intellectual Disability Endeavour in British Columbia: First Collaborative Area of Innovation)
  4. Genome BC [SOF-195]
  5. Rare Diseases Foundation
  6. Rare Diseases Models and Mechanisms Network
  7. Canadian Institutes of Health Research [301221]
  8. Dutch Organization for Scientific Research, ZONMW [40-00506-98-9001]
  9. Dutch Organization for Scientific Research, ZONMW (VIDI) [91713359]
  10. Canadian Rare Disease Models and Mechanisms Network
  11. Brain Canada Foundation
  12. Natural Sciences and Engineering Research Council of Canada (NSERC)
  13. Canada Foundation for Innovation (CFI)
  14. Genome BC
  15. Genome Canada (ABC4DE Project)
  16. Vital-IT Project of the Swiss Institute of Bioinformatics (SIB
  17. Lausanne, Switzerland)
  18. Canadian Institutes of Health Research
  19. Michael Smith Foundation for Health Research Scholar Award (Vancouver, Canada)
  20. Marie Sklodowska-Curie fellowship [MSCA-IF-661491]

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We identified biallelic mutations in NANS, the gene encoding the synthase for N-acetylneuraminic acid (NeuNAc; sialic acid), in nine individuals with infantile-onset severe developmental delay and skeletal dysplasia. Patient body fluids showed an elevation in N-acetyl-d-mannosamine levels, and patient-derived fibroblasts had reduced NANS activity and were unable to incorporate sialic acid precursors into sialylated glycoproteins. Knockdown of nansa in zebrafish embryos resulted in abnormal skeletal development, and exogenously added sialic acid partially rescued the skeletal phenotype. Thus, NANS-mediated synthesis of sialic acid is required for early brain development and skeletal growth. Normal sialylation of plasma proteins was observed in spite of NANS deficiency. Exploration of endogenous synthesis, nutritional absorption, and rescue pathways for sialic acid in different tissues and developmental phases is warranted to design therapeutic strategies to counteract NANS deficiency and to shed light on sialic acid metabolism and its implications for human nutrition.

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