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Abstract:
The first total synthesis of the fungal metabolite caloporoside 1, a strong and selective inhibitor of phospholipase C, is described. Both sugar units of its complex disaccharidic segment were obtained from 3,4,6-tri-O-benzyl-d-glucopyranose 14 as a common building block, with d-gluco → d-manno inversions as the key strategic elements. This particular substitution reaction occurred readily on the acyclic segment (27 → 28), whereas ultrasonication was required to override adverse stereoelectronic effects upon formation of β-d-mannopyranoside unit 34. The (16R)-hydroxyheptadecylsalicylic acid part of 1 was efficiently prepared by a palladium-catalyzed Suzuki cross coupling reaction of aryltriflate 7 with the 9-alkyl-9-BBN derivative formed from alkene 6 and 9-H-9-BBN.