» Articles » PMID: 24177201

Combined Lewis Acid and Brønsted Acid-mediated Reactivity of Glycosyl Trichloroacetimidate Donors

Overview
Journal Carbohydr Res
Publisher Elsevier
Date 2013 Nov 2
PMID 24177201
Citations 3
Authors
Affiliations
Soon will be listed here.
Abstract

Biomimetic conditions for a synthetic glycosylation reaction, inspired by the highly conserved functionality of carbohydrate active enzymes, were explored. At the outset, we sought to generate proof of principle for this approach to developing catalytic systems for glycosylation. However, control reactions and subsequent kinetic studies showed that a stoichiometric, irreversible reaction of the catalyst and glycosyl donor was occurring, with a remarkable rate variance depending upon the structure of the carboxylic acid. It was subsequently found that a combination of Brønsted acid (carboxylic acid) and Lewis acid (MgBr2) was unique in catalyzing the desired glycosylation reaction. Thus, it was concluded that the two acids act synergistically to catalyze the desired transformation. The role of the catalytic components was tested with a number of control reactions and based on these studies a mechanism is proposed herein.

Citing Articles

Self-promoted and stereospecific formation of -glycosides.

Nielsen M, Mala P, Baldursson E, Pedersen C Chem Sci. 2019; 10(20):5299-5307.

PMID: 31191886 PMC: 6540880. DOI: 10.1039/c9sc00857h.


The Experimental Evidence in Support of Glycosylation Mechanisms at the S1-S2 Interface.

Adero P, Amarasekara H, Wen P, Bohe L, Crich D Chem Rev. 2018; 118(17):8242-8284.

PMID: 29846062 PMC: 6135681. DOI: 10.1021/acs.chemrev.8b00083.


Macrocyclic bis-thioureas catalyze stereospecific glycosylation reactions.

Park Y, Harper K, Kuhl N, Kwan E, Liu R, Jacobsen E Science. 2017; 355(6321):162-166.

PMID: 28082586 PMC: 5671764. DOI: 10.1126/science.aal1875.