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  2. O-linked glycosylation - Wikipedia

    en.wikipedia.org/wiki/O-linked_glycosylation

    One of the first and only examples of O-glycosylation on tyrosine, rather than on serine or threonine residues, is the addition of glucose to a tyrosine residue in glycogenin. [7] Glycogenin is a glycosyltransferase that initiates the conversion of glucose to glycogen, present in muscle and liver cells.

  3. Glycosylation - Wikipedia

    en.wikipedia.org/wiki/Glycosylation

    In addition, glycosylation is often used by viruses to shield the underlying viral protein from immune recognition. A significant example is the dense glycan shield of the envelope spike of the human immunodeficiency virus. [8] Overall, glycosylation needs to be understood by the likely evolutionary selection pressures that have shaped it.

  4. N-linked glycosylation - Wikipedia

    en.wikipedia.org/wiki/N-linked_glycosylation

    The different types of lipid-linked oligosaccharide (LLO) precursor produced in different organisms.. N-linked glycosylation is the attachment of an oligosaccharide, a carbohydrate consisting of several sugar molecules, sometimes also referred to as glycan, to a nitrogen atom (the amide nitrogen of an asparagine (Asn) residue of a protein), in a process called N-glycosylation, studied in ...

  5. Glycosylphosphatidylinositol - Wikipedia

    en.wikipedia.org/wiki/Glycosylphosphatidylinositol

    The resulting GPI-anchored proteins play key roles in a wide variety of biological processes. [1] GPI is composed of a phosphatidylinositol group linked through a carbohydrate -containing linker ( glucosamine and mannose glycosidically bound to the inositol residue) and via an ethanolamine phosphate (EtNP) bridge to the C-terminal amino acid of ...

  6. Glucocerebrosidase - Wikipedia

    en.wikipedia.org/wiki/Glucocerebrosidase

    Domain I (residues 1–27 and 383–414) forms a three-stranded anti-parallel β-sheet. This domain contains two disulfide bridges that are necessary for correct folding, as well as a glycosylated residue (Asn19) that is required for catalytic activity in vivo.

  7. Proteoglycan - Wikipedia

    en.wikipedia.org/wiki/Proteoglycan

    Proteoglycans are proteins [1] that are heavily glycosylated. The basic proteoglycan unit consists of a "core protein " with one or more covalently attached glycosaminoglycan (GAG) chain(s). [ 2 ] The point of attachment is a serine (Ser) residue to which the glycosaminoglycan is joined through a tetrasaccharide bridge (e.g. chondroitin sulfate ...

  8. Glycoprotein - Wikipedia

    en.wikipedia.org/wiki/Glycoprotein

    [1] Glycoproteins are proteins which contain oligosaccharide (sugar) chains covalently attached to amino acid side-chains. The carbohydrate is attached to the protein in a cotranslational or posttranslational modification. This process is known as glycosylation. Secreted extracellular proteins are often glycosylated.

  9. Glycosyl - Wikipedia

    en.wikipedia.org/wiki/Glycosyl

    The β-D-glucopyranosyl group which is obtained by the removal of the hemiacetal hydroxyl group (bottom right) from β-D-glucopyranoseIn organic chemistry, a glycosyl group is a univalent free radical or substituent structure obtained by removing the hydroxyl (−OH) group from the hemiacetal (−CH(OH)O−) group found in the cyclic form of a monosaccharide and, by extension, of a lower ...