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Updated: Apr 7, 2026
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Solid-phase Synthesis of [4.4] Spirocyclic Oximes
Published on: February 6, 2019
A General Strategy for the Synthesis of Jerangolids Enabled by π-allyl Stille Coupling
Janick Schug1, Bernd Morgenstern2, Johann Jauch1
1Organic Chemistry II, Saarland University, Saarbrücken, Germany.
Abstract:
Jerangolids are polyketide natural products with potent antifungal activity and low mammalian toxicity, originally isolated from Sorangium cellulosum So ce 307. Their structure, consisting of a δ-lactone and a pyran unit connected by a chiral skipped 1,4-diene, presents a significant synthetic challenge. Herein, we describe a general, modular strategy that enables the synthesis of all naturally occurring jerangolids and their stereoisomers, including the still elusive jerangolid H. The lactone fragment was built through a vinylogous Mukaiyama aldol reaction, with the hydroxymethyl group at C2 introduced in one step by Stille coupling with a novel p-methoxybenzyloxymethyl (PMBM) stannatrane. The stereocenter at both C14 and C15 was generated via deoxygenation of a tertiary alcohol involving a [1,2]-H-shift. Using a highly modular approach recently developed by our group, the jerangolid framework was assembled in a single step through enantioselective π-allyl Stille coupling of the two key fragments. Synthesis and comparison of both C14 epimers allowed us to unambiguously establish the total configuration of jerangolid H.
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