A Chemoenzymatic Approach for the Preparation of Asymmetric Bi-, Tri- and Tetra-Antennary N-Glycans from a Common Precursor

Publication date

2017

Authors

Gagarinov, Ivan A.ISNI 0000000492294519
Li, Tiehai
Toraño, Javier SastreORCID 0000-0002-0607-1892ISNI 0000000394140225
Čaval, TomislavISNI 000000050597344X
Srivastava, Apoorva D.ISNI 0000000492960745
Kruijtzer, JohnISNI 0000000387953981
Heck, Albert J RORCID 0000-0002-2405-4404ISNI 0000000393921118
Boons, Geert-JanORCID 0000-0003-3111-5954ISNI 0000000120249047

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Article
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taverne

Abstract

Progress in glycoscience is hampered by a lack of well-defined complex oligosaccharide standards that are needed to fabricate the next generation of microarrays, to develop analytical protocols to determine exact structures of isolated glycans, and to elucidate pathways of glycan biosynthesis. We describe here a chemoenzymatic methodology that makes it possible, for the first time, to prepare any bi-, tri-, and tetra-antennary asymmetric N-glycan from a single precursor. It is based on the chemical synthesis of a tetra-antennary glycan that has N-acetylglucosamine (GlcNAc), N-acetyllactosamine (LacNAc), and unnatural Galα(1,4)-GlcNAc and Manβ(1,4)-GlcNAc appendages. Mammalian glycosyltransferases recognize only the terminal LacNAc moiety as a substrate and thus this structure can be uniquely extended. Next, the β-GlcNAc terminating antenna can be converted into LacNAc by galactosylation and can then be enzymatically modified into a complex structure. The unnatural α-Gal and β-Man terminating antennae can sequentially be de-caged by an appropriate glycosidase to liberate a terminal β-GlcNAc moiety, which can be converted into LacNAc and then elaborated by a panel of glycosylransferases. Asymmetric bi- and tri-antennary glycans could be obtained by removal of a terminal β-GlcNAc moiety by treatment with β-N-acetylglucosaminidase and selective extension of the other arms. The power of the methodology is demonstrated by the preparation of an asymmetric tetra-antennary N-glycan found in human breast carcinoma tissue, which represents the most complex N-glycan ever synthesized. Multistage mass spectrometry of the two isomeric tri-antennary glycans uncovered unique fragment ions that will facilitate identification of exact structures of glycans in biological samples.

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Citation

Gagarinov, I A, Li, T, Sastre Torano, J, Caval, T, Srivastava, A D, Kruijtzer, J A W, Heck, A J R & Boons, G-J 2017, 'A Chemoenzymatic Approach for the Preparation of Asymmetric Bi-, Tri- and Tetra-Antennary N-Glycans from a Common Precursor', Journal of the American Chemical Society. https://doi.org/10.1021/jacs.6b12080