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Paramagnetic Tag for Glycosylation Sites in Glycoproteins: Structural Constraints on Heparan Sulfate Binding to Robo1

Authors :
Kelley W. Moremen
Geert-Jan Boons
Jeong-Yeh Yang
Qi Gao
Yuejie Zhao
Digantkumar Chapla
Maria J Moure
I. Jonathan Amster
Laura C. Morris
James H. Prestegard
Chengli Zong
Alexander Eletsky
Source :
ACS chemical biology. 13(9)
Publication Year :
2018

Abstract

An enzyme- and click chemistry-mediated methodology for the site-specific nitroxide spin labeling of glycoproteins has been developed and applied. The procedure relies on the presence of single N-glycosylation sites that are present natively in proteins or that can be engineered into glycoproteins by mutational elimination of all but one glycosylation site. Recombinantly expressing glycoproteins in HEK293S (GnT1-) cells results in N-glycans with high-mannose structures that can be processed to leave a single GlcNAc residue. This can in turn be modified by enzymatic addition of a GalNAz residue that is subject to reaction with an alkyne-carrying TEMPO moiety using copper (I)-catalyzed Click Chemistry. To illustrate the procedure, we have made an application to a two-domain construct of Robo1, a protein that carries a single N-glycosylation site in its N-terminal domains. The construct has also been labeled with (15)N at amide nitrogens of lysine residues to provide a set of sites that are used to derive an effective location of the paramagnetic nitroxide moiety of the TEMPO group. This, in turn, allowed measurements of paramagnetic perturbations to the spectra of a new high affinity heparan sulfate ligand. Calculation of distance constraints from these data facilitated determination of an atomic level model for the docked complex.

Details

ISSN :
15548937
Volume :
13
Issue :
9
Database :
OpenAIRE
Journal :
ACS chemical biology
Accession number :
edsair.doi.dedup.....fadcf4faf77d174b1a41887505e93a3d