Cotranslational folding and calnexin binding during glycoprotein synthesis.
Author(s) -
Wanghua Chen,
Jonne Helenius,
Ineke Braakman,
Ari Helenius
Publication year - 1995
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.92.14.6229
Subject(s) - calnexin , endoplasmic reticulum , chaperone (clinical) , glycoprotein , glycosylation , biochemistry , hemagglutinin (influenza) , protein folding , oligosaccharide , chemistry , glycobiology , glycan , immunoprecipitation , epitope , protein disulfide isomerase , chaperonin , calreticulin , microbiology and biotechnology , biology , antibody , gene , pathology , immunology , medicine
To analyze cotranslational folding of influenza hemagglutinin in the endoplasmic reticulum of live cells, we used short pulses of radiolabeling followed by immunoprecipitation and analysis with a two-dimensional SDS/polyacrylamide gel system which was nonreducing in the first dimension and reducing in the second. It separated nascent glycopolypeptides of different length and oxidation state. Evidence was obtained for cotranslational disulfide formation, generation of conformational epitopes, N-linked glycosylation, and oligosaccharide-dependent binding of calnexin, a membrane-bound chaperone that binds to incompletely folded glycoproteins via partially glucose-trimmed oligosaccharides. When glycosylation or oligosaccharide trimming was inhibited, the folding pathway was perturbed, suggesting a role for N-linked oligosaccharides and calnexin during translation of hemagglutinin.
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