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A Diazido Mannose Analogue As A Chemoenzymatic Synthon For Synthesizing Di-N-Acetyllegionaminic Acid-Containing Glycosides

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION(2018)

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摘要
A chemoenzymatic synthon was designed to expand the scope of the chemoenzymatic synthesis of carbohydrates. The synthon was enzymatically converted into carbohydrate analogues, which were readily derivatized chemically to produce the desired targets. The strategy is demonstrated for the synthesis of glycosides containing 7,9-di-N-acetyllegionaminic acid (Leg5,7Ac(2)), a bacterial nonulosonic acid (NulO) analogue of sialic acid. A versatile library of alpha 2-3/6-linked Leg5,7Ac(2)-glycosides was built by using chemically synthesized 2,4-diazido-2,4,6-trideoxymannose as a chemoenzymatic synthon for highly efficient one-pot multienzyme (OPME) sialylation followed by downstream chemical conversion of the azido groups into acetamido groups. The syntheses required 10 steps from commercially available d-fucose and had an overall yield of 34-52%, thus representing a significant improvement over previous methods. Free Leg5,7Ac(2) monosaccharide was also synthesized by a sialic acid aldolasecatalyzed reaction.
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关键词
carbohydrates,chemoenzymatic synthesis,glycosylation,legionaminic acid,sialic acid
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