Synthesis of Unprecedented α/β-Alternate (1→4)-Glucans via Stereoselective Iterative Glycosylation.

Chemistry

School of Chemistry and Materials Science, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, 1 Sub-lane Xiangshan, Hangzhou, 310024, China.

Published: May 2023

Glucans are major biomaterials on the earth, with α-(1→4)-glucans (i. e., amylose) and β-(1→4)-glucans (i. e., cellulose) being the most abundant ones, which are relevant to energy storage and structural function, respectively. Interestingly, (1→4)-glucans with alternate α/β-linkages, namely herewith amycellulose, have never been disclosed in nature. Here we report a robust glycosylation protocol for the stereoselective construction of the 1,2-cis-α- and 1,2-trans-β-glucosidic linkages, which employs an optimal combination of glycosyl N-phenyltrifluoroacetimidates as donors, TMSNTf as promoter, CH Cl /nitrile or CH Cl /THF as solvents. A broad substrate scope has been demonstrated by coupling five imidate donors with eight glycosyl acceptors, in which most of the glycosylations lead to high yield and exclusively 1,2-cis-α- or 1,2-trans-β-selectivity. Applying this glycosylation protocol and with an iterative manner, the unprecedented α/β-alternate (1→4)-glucans up to a 16-mer have been synthesized. Differently from amylose, that adopts a compact helicoidal arrangement, the synthetic amycellulose features an extended ribbon-like conformation, comparable to the extended shape of cellulose.

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http://dx.doi.org/10.1002/chem.202300659DOI Listing

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