Literature DB >> 15708848

Analysis of glycosylation in CDG-Ia fibroblasts by fluorophore-assisted carbohydrate electrophoresis: implications for extracellular glucose and intracellular mannose 6-phosphate.

Ningguo Gao1, Jie Shang, Mark A Lehrman.   

Abstract

Phosphomannomutase (PMM) deficiency causes congenital disorder of glycosylation (CDG)-Ia, a broad spectrum disorder with developmental and neurological abnormalities. PMM converts mannose 6-phosphate (M6P) to mannose-1-phosphate, a precursor of GDP-mannose used to make Glc(3)Man(9)GlcNAc(2)-P-P-dolichol (lipid-linked oligosaccharide; LLO). LLO, in turn, is the donor substrate of oligosaccharyltransferase for protein N-linked glycosylation. Hepatically produced N-linked glycoproteins in CDG-Ia blood are hypoglycosylated. Upon labeling with [(3)H]mannose, CDG-Ia fibroblasts have been widely reported to accumulate [(3)H]LLO intermediates. Since these are thought to be poor oligosaccharyltransferase substrates, LLO intermediate accumulation has been the prevailing explanation for hypoglycosylation in patients. However, this is discordant with sporadic reports of specific glycoproteins (detected with antibodies) from CDG-Ia fibroblasts being fully glycosylated. Here, fluorophore-assisted carbohydrate electrophoresis (FACE, a nonradioactive technique) was used to analyze steady-state LLO compositions in CDG-Ia fibroblasts. FACE revealed that low glucose conditions accounted for previous observations of accumulated [(3)H]LLO intermediates. Additional FACE experiments demonstrated abundant Glc(3)Man(9)GlcNAc(2)-P-P-dolichol, without hypoglycosylation, CDG-Ia fibroblasts grown with physiological glucose. This suggested a "missing link" to explain hypoglycosylation in CDG-Ia patients. Because of the possibility of its accumulation, the effects of M6P on glycosylation were explored in vitro. Surprisingly, M6P was a specific activator for cleavage of Glc(3)Man(9)GlcNAc(2)-P-P-dolichol. This led to futile cycling the LLO pathway, exacerbated by GDP-mannose/PMM deficiency. The possibilities that M6P may accumulate in hepatocytes and that M6P-stimulated LLO cleavage may account for both hypoglycosylation and the clinical failure of dietary mannose therapy with CDG-Ia patients are discussed.

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Year:  2005        PMID: 15708848      PMCID: PMC1282451          DOI: 10.1074/jbc.M500510200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  36 in total

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Journal:  J Pediatr       Date:  1999-12       Impact factor: 4.406

2.  Carbohydrate-deficient glycoprotein syndrome type V: deficiency of dolichyl-P-Glc:Man9GlcNAc2-PP-dolichyl glucosyltransferase.

Authors:  C Körner; R Knauer; U Holzbach; F Hanefeld; L Lehle; K von Figura
Journal:  Proc Natl Acad Sci U S A       Date:  1998-10-27       Impact factor: 11.205

3.  Defect in N-glycosylation of proteins is tissue-dependent in congenital disorders of glycosylation Ia.

Authors:  T Dupré; A Barnier; P de Lonlay; V Cormier-Daire; G Durand; P Codogno; N Seta
Journal:  Glycobiology       Date:  2000-12       Impact factor: 4.313

4.  High residual activity of PMM2 in patients' fibroblasts: possible pitfall in the diagnosis of CDG-Ia (phosphomannomutase deficiency).

Authors:  S Grünewald; E Schollen; E Van Schaftingen; J Jaeken; G Matthijs
Journal:  Am J Hum Genet       Date:  2001-01-11       Impact factor: 11.025

5.  Abnormal synthesis of mannose 1-phosphate derived carbohydrates in carbohydrate-deficient glycoprotein syndrome type I fibroblasts with phosphomannomutase deficiency.

Authors:  C Körner; L Lehle; K von Figura
Journal:  Glycobiology       Date:  1998-02       Impact factor: 4.313

6.  Mannose supplementation corrects GDP-mannose deficiency in cultured fibroblasts from some patients with Congenital Disorders of Glycosylation (CDG).

Authors:  J S Rush; K Panneerselvam; C J Waechter; H H Freeze
Journal:  Glycobiology       Date:  2000-08       Impact factor: 4.313

7.  Requirement of the Lec35 gene for all known classes of monosaccharide-P-dolichol-dependent glycosyltransferase reactions in mammals.

Authors:  M Anand; J S Rush; S Ray; M A Doucey; J Weik; F E Ware; J Hofsteenge; C J Waechter; M A Lehrman
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9.  Carbohydrate-deficient glycoprotein syndrome type 1: correction of the glycosylation defect by deprivation of glucose or supplementation of mannose.

Authors:  C Körner; L Lehle; K von Figura
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10.  Glucose 6-phosphate transport in fibroblast microsomes from glycogen storage disease type 1b patients: evidence for multiple glucose 6-phosphate transport systems.

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Journal:  J Biol Chem       Date:  2011-01-27       Impact factor: 5.157

2.  5-thiomannosides block the biosynthesis of dolichol-linked oligosaccharides and mimic class I congenital disorders of glycosylation.

Authors:  Wesley F Zandberg; Ningguo Gao; Jayakanthan Kumarasamy; Mark A Lehrman; Nabil G Seidah; B Mario Pinto
Journal:  Chembiochem       Date:  2012-01-19       Impact factor: 3.164

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4.  Non-lysosomal Degradation of Singly Phosphorylated Oligosaccharides Initiated by the Action of a Cytosolic Endo-β-N-acetylglucosaminidase.

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Review 5.  Understanding human glycosylation disorders: biochemistry leads the charge.

Authors:  Hudson H Freeze
Journal:  J Biol Chem       Date:  2013-01-17       Impact factor: 5.157

6.  Metabolically programmed quality control system for dolichol-linked oligosaccharides.

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7.  Oligosaccharyltransferase inhibition induces senescence in RTK-driven tumor cells.

Authors:  Cecilia Lopez-Sambrooks; Shiteshu Shrimal; Carol Khodier; Daniel P Flaherty; Natalie Rinis; Jonathan C Charest; Ningguo Gao; Peng Zhao; Lance Wells; Timothy A Lewis; Mark A Lehrman; Reid Gilmore; Jennifer E Golden; Joseph N Contessa
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8.  Identification of roles for peptide: N-glycanase and endo-beta-N-acetylglucosaminidase (Engase1p) during protein N-glycosylation in human HepG2 cells.

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9.  The compartmentalisation of phosphorylated free oligosaccharides in cells from a CDG Ig patient reveals a novel ER-to-cytosol translocation process.

Authors:  Delphine Peric; Christelle Durrant-Arico; Christophe Delenda; Thierry Dupré; Pascale De Lonlay; Hélène Ogier de Baulny; Cécile Pelatan; Brigitte Bader-Meunier; Olivier Danos; Isabelle Chantret; Stuart E H Moore
Journal:  PLoS One       Date:  2010-07-20       Impact factor: 3.240

10.  Eukaryotic oligosaccharyltransferase generates free oligosaccharides during N-glycosylation.

Authors:  Yoichiro Harada; Reto Buser; Elsy M Ngwa; Hiroto Hirayama; Markus Aebi; Tadashi Suzuki
Journal:  J Biol Chem       Date:  2013-09-23       Impact factor: 5.157

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