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Glucosidase II and N-glycan mannose content regulate the half-lives of monoglucosylated species in vivo

Glucosidase II (GII) sequentially removes the two innermost glucose residues from the glycan (Glc(3)Man(9)GlcNAc(2)) transferred to proteins. GII also participates in cycles involving the lectin/chaperones calnexin (CNX) and calreticulin (CRT) as it removes the single glucose unit added to folding i...

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Detalles Bibliográficos
Autores principales: Stigliano, Ivan D., Alculumbre, Solana G., Labriola, Carlos A., Parodi, Armando J., D'Alessio, Cecilia
Formato: Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3103398/
https://www.ncbi.nlm.nih.gov/pubmed/21471007
http://dx.doi.org/10.1091/mbc.E11-01-0019
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author Stigliano, Ivan D.
Alculumbre, Solana G.
Labriola, Carlos A.
Parodi, Armando J.
D'Alessio, Cecilia
author_facet Stigliano, Ivan D.
Alculumbre, Solana G.
Labriola, Carlos A.
Parodi, Armando J.
D'Alessio, Cecilia
author_sort Stigliano, Ivan D.
collection PubMed
description Glucosidase II (GII) sequentially removes the two innermost glucose residues from the glycan (Glc(3)Man(9)GlcNAc(2)) transferred to proteins. GII also participates in cycles involving the lectin/chaperones calnexin (CNX) and calreticulin (CRT) as it removes the single glucose unit added to folding intermediates and misfolded glycoproteins by the UDP-Glc:glycoprotein glucosyltransferase (UGGT). GII is a heterodimer in which the α subunit (GIIα) bears the active site, and the β subunit (GIIβ) modulates GIIα activity through its C-terminal mannose 6-phosphate receptor homologous (MRH) domain. Here we report that, as already described in cell-free assays, in live Schizosaccharomyces pombe cells a decrease in the number of mannoses in the glycan results in decreased GII activity. Contrary to previously reported cell-free experiments, however, no such effect was observed in vivo for UGGT. We propose that endoplasmic reticulum α-mannosidase–mediated N-glycan demannosylation of misfolded/slow-folding glycoproteins may favor their interaction with the lectin/chaperone CNX present in S. pombe by prolonging the half-lives of the monoglucosylated glycans (S. pombe lacks CRT). Moreover, we show that even N-glycans bearing five mannoses may interact in vivo with the GIIβ MRH domain and that the N-terminal GIIβ G2B domain is involved in the GIIα–GIIβ interaction. Finally, we report that protists that transfer glycans with low mannose content to proteins have nevertheless conserved the possibility of displaying relatively long-lived monoglucosylated glycans by expressing GIIβ MRH domains with a higher specificity for glycans with high mannose content.
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spelling pubmed-31033982011-08-16 Glucosidase II and N-glycan mannose content regulate the half-lives of monoglucosylated species in vivo Stigliano, Ivan D. Alculumbre, Solana G. Labriola, Carlos A. Parodi, Armando J. D'Alessio, Cecilia Mol Biol Cell Articles Glucosidase II (GII) sequentially removes the two innermost glucose residues from the glycan (Glc(3)Man(9)GlcNAc(2)) transferred to proteins. GII also participates in cycles involving the lectin/chaperones calnexin (CNX) and calreticulin (CRT) as it removes the single glucose unit added to folding intermediates and misfolded glycoproteins by the UDP-Glc:glycoprotein glucosyltransferase (UGGT). GII is a heterodimer in which the α subunit (GIIα) bears the active site, and the β subunit (GIIβ) modulates GIIα activity through its C-terminal mannose 6-phosphate receptor homologous (MRH) domain. Here we report that, as already described in cell-free assays, in live Schizosaccharomyces pombe cells a decrease in the number of mannoses in the glycan results in decreased GII activity. Contrary to previously reported cell-free experiments, however, no such effect was observed in vivo for UGGT. We propose that endoplasmic reticulum α-mannosidase–mediated N-glycan demannosylation of misfolded/slow-folding glycoproteins may favor their interaction with the lectin/chaperone CNX present in S. pombe by prolonging the half-lives of the monoglucosylated glycans (S. pombe lacks CRT). Moreover, we show that even N-glycans bearing five mannoses may interact in vivo with the GIIβ MRH domain and that the N-terminal GIIβ G2B domain is involved in the GIIα–GIIβ interaction. Finally, we report that protists that transfer glycans with low mannose content to proteins have nevertheless conserved the possibility of displaying relatively long-lived monoglucosylated glycans by expressing GIIβ MRH domains with a higher specificity for glycans with high mannose content. The American Society for Cell Biology 2011-06-01 /pmc/articles/PMC3103398/ /pubmed/21471007 http://dx.doi.org/10.1091/mbc.E11-01-0019 Text en © 2011 Stigliano et al. This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0). “ASCB”, “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society of Cell Biology.
spellingShingle Articles
Stigliano, Ivan D.
Alculumbre, Solana G.
Labriola, Carlos A.
Parodi, Armando J.
D'Alessio, Cecilia
Glucosidase II and N-glycan mannose content regulate the half-lives of monoglucosylated species in vivo
title Glucosidase II and N-glycan mannose content regulate the half-lives of monoglucosylated species in vivo
title_full Glucosidase II and N-glycan mannose content regulate the half-lives of monoglucosylated species in vivo
title_fullStr Glucosidase II and N-glycan mannose content regulate the half-lives of monoglucosylated species in vivo
title_full_unstemmed Glucosidase II and N-glycan mannose content regulate the half-lives of monoglucosylated species in vivo
title_short Glucosidase II and N-glycan mannose content regulate the half-lives of monoglucosylated species in vivo
title_sort glucosidase ii and n-glycan mannose content regulate the half-lives of monoglucosylated species in vivo
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3103398/
https://www.ncbi.nlm.nih.gov/pubmed/21471007
http://dx.doi.org/10.1091/mbc.E11-01-0019
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