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A concise synthesis of berkelic acid inspired by combining the natural products spicifernin and pulvilloric acid. | LitMetric

AI Article Synopsis

  • The research presents a straightforward synthesis of berkelic acid, a unique fungal metabolite, successfully determining its C22 stereochemistry.
  • The synthesis methodology involved a combination of reactions, including a Ag-catalyzed process that allowed for efficient coupling of two natural product-inspired fragments.
  • Overall, the total synthesis of berkelic acid and its C22 epimer was achieved in a 10-step linear process with yields ranging from 11% to 27%.

Article Abstract

We describe a concise synthesis of the structurally novel fungal extremophile metabolite berkelic acid, an effort leading to an unambiguous assignment of C22 stereochemistry. Our synthetic approach was inspired by the recognition that berkelic acid displays structural characteristics reminiscent of two other fungal metabolites, spicifernin and pulvilloric acid. Based on this notion, we executed a synthesis that features a Ag-catalyzed cascade dearomatization-cycloisomerization-cycloaddition sequence to couple two natural product inspired fragments. Notably, a spicifernin-like synthon was prepared with defined C22 stereochemistry in seven steps and three purifications (24-28% overall yield). A potentially useful anti-selective conjugate propargylation reaction was developed to introduce the vicinal stereodiad. An enantioconvergent synthesis of the other coupling partner, the aromatic precursor to pulvilloric acid methyl ester, was achieved in eight steps and 48% overall yield. The total synthesis of berkelic acid and its C22 epimer was thus completed in a 10 step linear sequence and 11-27% overall yield.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2769089PMC
http://dx.doi.org/10.1021/ja905387rDOI Listing

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