N-Glycan on the Non-Consensus N-X-C Glycosylation Site Impacts Activity, Stability, and Localization of the Sda Synthase B4GALNT2
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Published:2023-02-18
Issue:4
Volume:24
Page:4139
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ISSN:1422-0067
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Container-title:International Journal of Molecular Sciences
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language:en
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Short-container-title:IJMS
Author:
Cogez Virginie1,
Vicogne Dorothée1ORCID,
Schulz Céline1ORCID,
Portier Lucie1,
Venturi Giulia2,
de Ruyck Jérôme1ORCID,
Decloquement Mathieu1ORCID,
Lensink Marc F.1ORCID,
Brysbaert Guillaume1ORCID,
Dall’Olio Fabio2ORCID,
Groux-Degroote Sophie1,
Harduin-Lepers Anne1ORCID
Affiliation:
1. CNRS, UMR 8576-UGSF-Unité de Glycobiologie Structurale et Fonctionnelle, Université de Lille, F-59000 Lille, France
2. Department of Medical and Surgical Sciences (DIMEC), University of Bologna, General Pathology Building, Via San Giacomo 14, 40126 Bologna, Italy
Abstract
The Sda carbohydrate epitope and its biosynthetic B4GALNT2 enzyme are expressed in the healthy colon and down-regulated to variable extents in colon cancer. The human B4GALNT2 gene drives the expression of a long and a short protein isoform (LF-B4GALNT2 and SF-B4GALNT2) sharing identical transmembrane and luminal domains. Both isoforms are trans-Golgi proteins and the LF-B4GALNT2 also localizes to post-Golgi vesicles thanks to its extended cytoplasmic tail. Control mechanisms underpinning Sda and B4GALNT2 expression in the gastrointestinal tract are complex and not fully understood. This study reveals the existence of two unusual N-glycosylation sites in B4GALNT2 luminal domain. The first atypical N-X-C site is evolutionarily conserved and occupied by a complex-type N-glycan. We explored the influence of this N-glycan using site-directed mutagenesis and showed that each mutant had a slightly decreased expression level, impaired stability, and reduced enzyme activity. Furthermore, we observed that the mutant SF-B4GALNT2 was partially mislocalized in the endoplasmic reticulum, whereas the mutant LF-B4GALNT2 was still localized in the Golgi and post-Golgi vesicles. Lastly, we showed that the formation of homodimers was drastically impaired in the two mutated isoforms. An AlphaFold2 model of the LF-B4GALNT2 dimer with an N-glycan on each monomer corroborated these findings and suggested that N-glycosylation of each B4GALNT2 isoform controlled their biological activity.
Funder
the Centre National de la Recherche Scientifique (CNRS), la région Hauts de France (program Arcir dynamique) and the University of Lille
la Ligue contre le cancer 2016 and the Agence Nationale de la Recherche
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis
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