Literature DB >> 7107633

Oligosaccharide accessibility to peptide:N-glycosidase as promoted by protein-unfolding reagents.

A L Tarentino, T H Plummer.   

Abstract

The ability of almond emulsion peptide:N-glycosidase to remove oligosaccharide chains from intact glycoproteins was studied. Protein conformation appeared to be the main factor affecting carbohydrate removal. In the native state the oligosaccharides of ribonuclease B and the Fab mu fragment derived from immunoglobulin M were completely resistant to the enzyme, indicating that the polypeptide chain restricts access to the site of hydrolysis. Heat denaturation in sodium dodecyl sulfate rendered these glycoproteins susceptible to peptide:N-glycosidase, but perturbation with chaotropic salts provided a more gentle approach, which was as effective as detergent-unfolding and more compatible with the stability of the enzyme. Once exposed by the unfolding reagents, the complex oligosaccharides of Fab mu were released more rapidly than the high mannose chains of ribonuclease B, consistent with their preferential release from small glycopeptides (Plummer, T. H., Jr., and Tarentino, A. L. (1981) J. Biol. Chem. 256, 10243-10246).

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Year:  1982        PMID: 7107633

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


  13 in total

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3.  Analysis of tomato polygalacturonase expression in transgenic tobacco.

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4.  Bacterial chitinase is modified and secreted in transgenic tobacco.

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5.  Lectin and Liquid Chromatography-Based Methods for Immunoglobulin (G) Glycosylation Analysis.

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6.  The core molecule from type H proteoglycan. Release of mannose-containing oligosaccharides by digestion with N-oligosaccharide glycopeptidase.

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7.  Kinetic comparison of peptide: N-glycosidases F and A reveals several differences in substrate specificity.

Authors:  F Altmann; S Schweiszer; C Weber
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8.  Control of carbohydrate processing: increased beta-1,6 branching in N-linked carbohydrates of Lec9 CHO mutants appears to arise from a defect in oligosaccharide-dolichol biosynthesis.

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10.  Identification of asparagine-linked oligosaccharides involved in tumor cell adhesion to laminin and type IV collagen.

Authors:  J W Dennis; C A Waller; V Schirrmacher
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