Concise syntheses of coronarin A, coronarin E, austrochaparol and pacovatinin A

21Citations
Citations of this article
14Readers
Mendeley users who have this article in their library.

Abstract

Total syntheses of (+)-coronarin A (1), (+)-coronarin E (2), (+)-austrochaparol (3) and (+)-pacovatinin A (4) were achieved from the synthetic (+)-albicanyl acetate (6). Dess-Martin oxidation of (+)-albicanol (5) derived from the chemoenzymatic product (6) gave an aldehyde (7), which was subjected to Julia one-pot olefination using β-furylmethyl-heteroaromatic sulfones (8 or 9 ) gave (+)-trans coronarin E (2) and (+)-cis coronarin E (12) with high cis-selectivity. The synthesis of (+)-coronarin A (1) from (+)-trans coronarin E (2) was achieved, while (+)-cis coronarin E (12) was converted to the natural products (+)-(5S,9S,10S)-15,16-epoxy-8(17),13(16),14-labdatriene (13) and (+)-austrochaparol (3). By the asymmetric synthesis of (+)-3, the absolute structure of (+)-3 was determined to be 5S, 7R, 9R, 10S configurations. Homologation of (+)-albicanol (5) followed by allylic oxidation gave (7α)-hydroxy nitrile (17), which was finally converted to the natural (+)-pacovatinin A (4) in 8 steps from (+)-albicanol (5). © 2008 Pharmaceutical Society of Japan.

Cite

CITATION STYLE

APA

Miyake, T., Uda, K., Kinoshita, M., Fujii, M., & Akita, H. (2008). Concise syntheses of coronarin A, coronarin E, austrochaparol and pacovatinin A. Chemical and Pharmaceutical Bulletin, 56(3), 398–403. https://doi.org/10.1248/cpb.56.398

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free