Access to 3-spiroindolizines containing an isoindole ring through intra-molecular arylation of spiro-N-acyliminium species: a new family of potent farnesyltransferase inhibitors
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Titre | Access to 3-spiroindolizines containing an isoindole ring through intra-molecular arylation of spiro-N-acyliminium species: a new family of potent farnesyltransferase inhibitors |
Type de publication | Journal Article |
Year of Publication | 2019 |
Auteurs | Pesquet A, Marzag H, Knorr M, Strohmann C, Lawson AMartin, Ghinet A, Dubois J, Amaury F, Daich A, Othman M |
Journal | ORGANIC & BIOMOLECULAR CHEMISTRY |
Volume | 17 |
Pagination | 2798-2808 |
Date Published | MAR 14 |
Type of Article | Article |
ISSN | 1477-0520 |
Résumé | Based on N-acyliminium species, two efficient and rapid approaches to diversify spirocyclic systems connected by two different carbon centers to the isoindole ring have been developed. The imide reduction and the tandem oxidative cleavage of olefin/formyl-amide equilibration were at first selected as the key steps for these strategies. Ultimately the intramolecular a-amidoalkylation reaction was achieved through the arylation of a-acetoxy lactams or a-hydroxy lactams using, respectively, a Lewis acid or a Bronsted acid depending on the nature of N-acyliminium precursors. The latter led, in addition to the spiro-6membered aza-heterocycles, to the formation of scarce spiro-5-membered analogues which show promising inhibitory activities on human farnesyltransferase in the nanomolar range demonstrating improved IC50 values of up to 1.5 nM. |
DOI | 10.1039/c8ob02612b |