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Mannose differs from glucose by inversion of the C-2 chiral center. Mannose displays a pucker in the solution ring form. This simple change leads to the drastically different biochemistry of the two hexoses. This change has the same effect on the other aldohexoses, as well. [citation needed]
Subunit of a typical mannan showing four 1,4-linked beta-D-mannose units, one with a galactose side chain. Mannans are polymers containing the sugar mannose as a principal component. [1] [2] They are a type of polysaccharide found in hemicellulose, a major source of biomass found in higher plants such as softwoods.
Hydrolysis of terminal, non-reducing β-D-mannose residues in β-D-mannosides. This gene encodes a member of the glycosyl hydrolase 2 family. The encoded protein localizes to the lysosome where it is the final exoglycosidase in the pathway for N-linked glycoprotein oligosaccharide catabolism.
This page was last edited on 4 October 2008, at 13:37 (UTC).; Text is available under the Creative Commons Attribution-ShareAlike 4.0 License; additional terms may ...
A segment of galactomannan showing mannose backbone (below) with a branching galactose unit (top) Galactomannans are polysaccharides consisting of a mannose backbone with galactose side groups, more specifically, a (1-4)-linked beta-D-mannopyranose backbone with branchpoints from their 6-positions linked to alpha-D-galactose, (i.e. 1-6-linked alpha-D-galactopyranose).
Avalglucosidase alfa is composed of the human GAA enzyme that is conjugated with a couple of bis-mannose-6-phosphate (bis-M6P) tetra-mannose glycans. [12] The bis-MGP of avalglucosidase alpha binds to the cation-independent mannose-6-phosphate receptor which is located on the skeletal muscles. [12]
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