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Authored: Dall'Olio, GM, 2009-11-10, Edited: Jassal, B, 2009-11-10, N-linked glycosylation commences with the 14-step synthesis of a dolichol lipid-linked oligosaccharide (LLO) consisting of 14 sugars (2 core GlcNAcs, 9 mannoses and 3 terminal GlcNAcs). This pathway is highly conserved in eukaryotes, and a closely related pathway is found in many eubacteria and Archaea. Mutations in the genes associated with N-glycan precursor synthesis lead to a diverse group of disorders collectively known as Congenital Disorders of Glycosylation (type I and II) (Sparks et al, 1993). The phenotypes of these disorders reflect the important role that N-glycosylation has during development, controlling the folding and the properties of proteins in the secretory pathway, and proteins that mediate cell-to-cell interactions or timing of development., Reviewed: Gagneux, P, 2010-04-16
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Biosynthesis of the N-glycan precursor (dolichol lipid-linked oligosaccharide, LLO) and transfer to a nascent protein
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http://www.reactome.org/biopax/48887BiochemicalReaction1974, http://www.reactome.org/biopax/48887BiochemicalReaction1975, http://www.reactome.org/biopax/48887BiochemicalReaction1976, http://www.reactome.org/biopax/48887BiochemicalReaction1977, http://www.reactome.org/biopax/48887BiochemicalReaction1978, http://www.reactome.org/biopax/48887BiochemicalReaction1979, http://www.reactome.org/biopax/48887BiochemicalReaction1980, http://www.reactome.org/biopax/48887BiochemicalReaction1981, http://www.reactome.org/biopax/48887BiochemicalReaction1982, http://www.reactome.org/biopax/48887BiochemicalReaction1983, http://www.reactome.org/biopax/48887BiochemicalReaction1984, http://www.reactome.org/biopax/48887BiochemicalReaction1985, http://www.reactome.org/biopax/48887BiochemicalReaction1986, http://www.reactome.org/biopax/48887BiochemicalReaction1987, http://www.reactome.org/biopax/48887Pathway518
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