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The Metabolic Map into the Pathomechanism and Treatment of PGM1-CDG

  • Silvia Radenkovic
  • , Matthew J. Bird
  • , Tim L. Emmerzaal
  • , Sunnie Y. Wong
  • , Catarina Felgueira
  • , Kyle M. Stiers
  • , Leila Sabbagh
  • , Nastassja Himmelreich
  • , Gernot Poschet
  • , Petra Windmolders
  • , Jan Verheijen
  • , Peter Witters
  • , Ruqaiah Altassan
  • , Tomas Honzik
  • , Tuba F. Eminoglu
  • , Phillip M. James
  • , Andrew C. Edmondson
  • , Jozef Hertecant
  • , Tamas Kozicz
  • , Christian Thiel
  • Pieter Vermeersch, David Cassiman, Lesa Beamer, Eva Morava*, Bart Ghesquière
*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Phosphoglucomutase 1 (PGM1) encodes the metabolic enzyme that interconverts glucose-6-P and glucose-1-P. Mutations in PGM1 cause impairment in glycogen metabolism and glycosylation, the latter manifesting as a congenital disorder of glycosylation (CDG). This unique metabolic defect leads to abnormal N-glycan synthesis in the endoplasmic reticulum (ER) and the Golgi apparatus (GA). On the basis of the decreased galactosylation in glycan chains, galactose was administered to individuals with PGM1-CDG and was shown to markedly reverse most disease-related laboratory abnormalities. The disease and treatment mechanisms, however, have remained largely elusive. Here, we confirm the clinical benefit of galactose supplementation in PGM1-CDG-affected individuals and obtain significant insights into the functional and biochemical regulation of glycosylation. We report here that, by using tracer-based metabolomics, we found that galactose treatment of PGM1-CDG fibroblasts metabolically re-wires their sugar metabolism, and as such replenishes the depleted levels of galactose-1-P, as well as the levels of UDP-glucose and UDP-galactose, the nucleotide sugars that are required for ER- and GA-linked glycosylation, respectively. To this end, we further show that the galactose in UDP-galactose is incorporated into mature, de novo glycans. Our results also allude to the potential of monosaccharide therapy for several other CDG.

Original languageEnglish
Pages (from-to)835-846
Number of pages12
JournalAmerican Journal of Human Genetics
Volume104
Issue number5
DOIs
Publication statusPublished - 2 May 2019
Externally publishedYes

Keywords

  • CDG
  • central carbon metabolism
  • galactose
  • glycosylation
  • mitochondria
  • nucleotide sugars
  • PGM1-CDG
  • tracer metabolomics

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