Polyprenylated polycyclic acylphloroglucines (PPAPs) are a family of natural products that possess a wide range of different important biological activities because of the relative position and configuration of four substituents that decorate one common central bicyclo[3.3.1]nonane-2,4,9-trione core. The rigid bicyclic framework with its lipophilic side chains and its hydrophilic trione moiety represents a nature-derived lead structure that arranges the substituents (R(1) to R(4)) into a defined topographical orientation. As the substituents are responsible for the biological activities, the seven-step synthetic approach presented here sets the stage for an iterative introduction of R(1) to R(4) and thus generates structurally diverse trans-type B PPAPs. Four natural and one non-natural trans-type B PPAPs were prepared starting from acetylacetone with overall yields that ranged from 6 to 22%. The concept of separating framework construction from decorating transformations plus the minimization of protecting-group operations are the key issues for the realization of our synthetic approach.
Iron at the crossroads: A remarkable mechanistic dichotomy in iron‐catalyzed allylic substition increases not only the scope of regioselective allylic alkylation but could also herald the development of asymmetric allylic substitution (see Scheme, MTBE=methyl tert‐butyl ether). Depending on the ligand used, either a σ‐ or a π‐allyl mechanism is observed.
Eisen am Scheideweg: Ein ungewöhnlicher Wechsel des Mechanismus der Fe‐katalysierten allylischen Substitution je nach eingesetztem Liganden vergrößert nicht nur die Anwendungsbreite der regioselektiven Allylierung, sondern könnte auch der Ausgangspunkt zur Entwicklung einer asymmetrischen allylischen Substitution sein (siehe Schema; MTBE=Methyl‐tert‐butylether).
The title compound, C26H38O3, was prepared by an intramolecular Claisen-like cyclization of ethyl 2-acetoxy-4,4-dimethyl-1-(3-methylbut-2-enyl)cyclohex-2-enecarboxylate followed by dialkylation. One of the methyl groups is disordered over two sets of sites in a 0.67:0.33 ratio.
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