Global mapping of GalNAc-T isoform-specificities and O-glycosylation site-occupancy in a tissue-forming human cell line

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Mucin-type-O-glycosylation on proteins is integrally involved in human health and disease and is coordinated by an enzyme family of 20 N-acetylgalactosaminyltransferases (GalNAc-Ts). Detailed knowledge on the biological effects of site-specific O-glycosylation is limited due to lack of information on specific glycosylation enzyme activities and O-glycosylation site-occupancies. Here we present a systematic analysis of the isoform-specific targets of all GalNAc-Ts expressed within a tissue-forming human skin cell line, and demonstrate biologically significant effects of O-glycan initiation on epithelial formation. We find over 300 unique glycosylation sites across a diverse set of proteins specifically regulated by one of the GalNAc-T isoforms, consistent with their impact on the tissue phenotypes. Notably, we discover a high variability in the O-glycosylation site-occupancy of 70 glycosylated regions of secreted proteins. These findings revisit the relevance of individual O-glycosylation sites in the proteome, and provide an approach to establish which sites drive biological functions.

OriginalsprogEngelsk
Artikelnummer6257
TidsskriftNature Communications
Vol/bind13
Antal sider17
ISSN2041-1723
DOI
StatusUdgivet - 2022

Bibliografisk note

Funding Information:
We thank Louise Rosgaard Duus and Karin Uch Hansen, University of Copenhagen, for their expert help with the cell culture and sequencing. This project has received funding from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation programme (GlycoSkin H2020-ERC; 772735; M.I.N., N.d.H., I.B., S.D., and H.H.W.) the European Commission (Imgene H2020 and Remodel; M.I.N., N.d.H., I.B., S.D., and H.H.W.), the Lundbeck Foundation (R313-2019-869; H.H.W.), the Danish National Research Foundation (DNRF107; S.Y.V. and H.H.W.), the National Science Foundation (Graduate Opportunities Worldwide Grant; W.K.), the Neye Foundation (H.H.W.), the Friis Foundation (H.H.W.), the Michelsen Foundation (H.H.W.), and the A.P. Møller og Hustru Chastine McKinney Møllers Fond til Almene Formaal (S.Y.V. and H.H.W.).

Publisher Copyright:
© 2022, The Author(s).

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