Characterization of glycosyl dioxolenium ions and their role in glycosylation reactions

Author:

Hansen ThomasORCID,Elferink Hidde,van Hengst Jacob M. A.,Houthuijs Kas J.ORCID,Remmerswaal Wouter A.ORCID,Kromm Alexandra,Berden GielORCID,van der Vorm StefanORCID,Rijs Anouk M.ORCID,Overkleeft Hermen S.,Filippov Dmitri V.,Rutjes Floris P. J. T.,van der Marel Gijsbert A.,Martens Jonathan,Oomens JosORCID,Codée Jeroen D. C.ORCID,Boltje Thomas J.ORCID

Abstract

AbstractControlling the chemical glycosylation reaction remains the major challenge in the synthesis of oligosaccharides. Though 1,2-trans glycosidic linkages can be installed using neighboring group participation, the construction of 1,2-cis linkages is difficult and has no general solution. Long-range participation (LRP) by distal acyl groups may steer the stereoselectivity, but contradictory results have been reported on the role and strength of this stereoelectronic effect. It has been exceedingly difficult to study the bridging dioxolenium ion intermediates because of their high reactivity and fleeting nature. Here we report an integrated approach, using infrared ion spectroscopy, DFT computations, and a systematic series of glycosylation reactions to probe these ions in detail. Our study reveals how distal acyl groups can play a decisive role in shaping the stereochemical outcome of a glycosylation reaction, and opens new avenues to exploit these species in the assembly of oligosaccharides and glycoconjugates to fuel biological research.

Funder

NWO-Rekentijd grant 17569

NWO-Rekentijd grant 17603

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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