A short and efficient methodology has been developed
to synthesize
an analogue of a lipooligosaccharide from Mycobacterium linda isolated from Crohn’s disease. The total synthesis of the
tetrasaccharide was achieved via a convergent [2 + 2] glycosylation
approach. The key features of the synthesis involve the selective
functionalization of a trehalose core via highly regioselective acylations
and regioselective glycosylations. The synthesis was completed via
a longest linear sequence of 14 steps in a 14.2% overall yield.
Recently, we synthesized the proposed structure of the fungal glycolipid fusaroside and suggested corrections in its structure with respect to the positions of the double bonds in the lipid portion. Herein, we report the first total synthesis of the proposed revised structure of fusaroside and thereby confirm its structure. The synthesis involved Julia−Kocienski olefination for the construction of fatty acid and its coupling with trehalose at the O4 position followed by late-stage gem-dimethylation as key steps.
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