Preparation of α-l-Rhamnobiosides by Open and Conventional Glycosylations for Studies of the rHPL Lectin

Author:

Demeter Fruzsina123,Balogh Tímea1,Fu Tse-Kai4,Chang Margaret Dah-Tsyr45,Lee Yuan-Chuan46,Borbás Anikó1,Herczeg Mihály17

Affiliation:

1. Department of Pharmaceutical Chemistry, University of Debrecen

2. MTA-DE Molecular Recognition and Interaction Research Group, University of Debrecen

3. Doctoral School of Chemistry, University of Debrecen

4. Institute of Molecular and Cellular Biology, National Tsing Hua University

5. Molecular Infectious Disease Research Center, Chang Gung Memorial Hospital, Chang Gung University College of Medicine

6. Department of Biology, Johns Hopkins University

7. Research Group for Oligosaccharide Chemistry of HAS, University of Debrecen

Abstract

To study the effect of oligosaccharides on biological systems (e.g., carbohydrate–lectin interactions), chemical synthesis of the desired carbohydrate derivatives is highly desirable, but it is usually a very complicated task. Most of the stereo- and regioselective glycosylation reactions are carried out by using protected acceptors and donors. At the same time, open glycosylation (use of an unprotected acceptor) may shorten the reaction pathway, if sufficient selectivity can be achieved between the acceptor hydroxyl groups. Toward synthesis of higher oligomers and multivalent derivatives, which are often useful for lectin binding studies, open glycosylation reactions of propargyl and phenylthio rhamnosides were investigated as a rapid route to the α-(1,3)-linked rhamnobioside binding motif. The efficacy of open glycosylations proved to be highly dependent on both the type of donor and the solvent applied. Using a trichloroacetimidate donor in 1,4-dioxane, the open glycosylation reactions proceeded with high regioselectivity and in good yields. Conventional glycosylations, on the other hand, afforded the α-(1,2)- and α-(1,3)-linked rhamnobioside derivatives with slightly higher yields via three-step longer syntheses.

Funder

European Regional Development Fund

Ministry of Science and Technology, Taiwan

Publisher

Georg Thieme Verlag KG

Subject

Organic Chemistry

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