Bump-and-hole engineering identifies specific substrates of glycosyltransferases in living cells
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Supporting information
Published version
Author(s)
Type
Journal Article
Abstract
Studying posttranslational modifications classically relies on experimental strategies that oversimplify the complex biosynthetic machineries of living cells. Protein glycosylation contributes to essential biological processes, but correlating glycan structure, underlying protein, and disease-relevant biosynthetic regulation is currently elusive. Here, we engineer living cells to tag glycans with editable chemical functionalities while providing information on biosynthesis, physiological context, and glycan fine structure. We introduce a non-natural substrate biosynthetic pathway and use engineered glycosyltransferases to incorporate chemically tagged sugars into the cell surface glycome of the living cell. We apply the strategy to a particularly redundant yet disease-relevant human glycosyltransferase family, the polypeptide N-acetylgalactosaminyl transferases. This approach bestows a gain-of-chemical-functionality modification on cells, where the products of individual glycosyltransferases can be selectively characterized or manipulated to understand glycan contribution to major physiological processes.
Date Issued
2020-06-05
Date Acceptance
2020-03-24
Citation
Molecular Cell, 2020, 78 (5), pp.824-834.e15
ISSN
1097-2765
Publisher
Elsevier (Cell Press)
Start Page
824
End Page
834.e15
Journal / Book Title
Molecular Cell
Volume
78
Issue
5
Copyright Statement
©2020 The Author(s). Published by Elsevier Inc. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/)
Identifier
https://www.sciencedirect.com/science/article/pii/S1097276520301982?via%3Dihub#!
Subjects
Science & Technology
Life Sciences & Biomedicine
Biochemistry & Molecular Biology
Cell Biology
GLCNAC-MODIFIED PROTEINS
O-GLYCOSYLATION
UDP-GALNAC
CHEMISTRY
COFACTOR
METHYLTRANSFERASE
GLYCOPROTEOME
TRANSCRIPTION
VALIDATION
DISCOVERY
O-glycosylation
bioorthogonal
chemical proteomics
glycosyltransferase
isoenzyme
mucin
Biosynthetic Pathways
Cell Membrane
Glycosylation
Glycosyltransferases
HEK293 Cells
Hep G2 Cells
Humans
K562 Cells
N-Acetylgalactosaminyltransferases
Polysaccharides
Protein Engineering
Proteins
K562 Cells
Cell Membrane
Humans
Glycosyltransferases
N-Acetylgalactosaminyltransferases
Polysaccharides
Proteins
Protein Engineering
Glycosylation
Biosynthetic Pathways
Hep G2 Cells
HEK293 Cells
06 Biological Sciences
11 Medical and Health Sciences
Developmental Biology
Publication Status
Published
Date Publish Online
2020-04-22