Literature DB >> 18774862

Total synthesis and proof of relative stereochemistry of (-)-aureonitol.

Peter J Jervis1, Liam R Cox.   

Abstract

Two trisubstituted epimeric tetrahydrofurans, 1 and 2, have been synthesized in order to confirm the relative stereochemistry in the natural product aureonitol. The key step in the synthesis of 1 and 2 involved a stereoselective intramolecular allylation of an allylsilane with an aldehyde, which introduced the stereotriad in the five-membered ring. The major tetrahydrofuran diastereoisomer 18 from this cyclization reaction was subsequently elaborated to tetrahydrofuran 1. Its 3-epimer (2) was then prepared from 1 via an oxidation-reduction sequence. Compound 1 exhibits identical (1)H NMR data to those reported for aureonitol, which was isolated from Helichrysum aureonitons by Bohlmann in 1979, whereas the (1)H NMR data for 2 are markedly different. The (1)H NMR data (in CDCl3, CD3OD, and C6D6) and (13)C NMR data (in CDCl3) for 1 are also identical with those reported for a natural product isolated from various Chaetomium sp. by Abraham, Seto, and Teuscher. These findings support Abraham's conclusion that the structure of aureonitol should be revised from 2 to 1. The enantioselective synthesis of 1 has also confirmed that (-)-aureonitol isolated by Abraham contains the (2S,3R,4S) absolute configuration of stereocenters on the tetrahydrofuran ring.

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Year:  2008        PMID: 18774862     DOI: 10.1021/jo801338t

Source DB:  PubMed          Journal:  J Org Chem        ISSN: 0022-3263            Impact factor:   4.354


  2 in total

1.  Aureonitol, a Fungi-Derived Tetrahydrofuran, Inhibits Influenza Replication by Targeting Its Surface Glycoprotein Hemagglutinin.

Authors:  Carolina Q Sacramento; Andressa Marttorelli; Natalia Fintelman-Rodrigues; Caroline S de Freitas; Gabrielle R de Melo; Marco E N Rocha; Carlos R Kaiser; Katia F Rodrigues; Gisela L da Costa; Cristiane M Alves; Osvaldo Santos-Filho; Jussara P Barbosa; Thiago Moreno L Souza
Journal:  PLoS One       Date:  2015-10-13       Impact factor: 3.240

2.  Decarboxylative alkenylation.

Authors:  Jacob T Edwards; Rohan R Merchant; Kyle S McClymont; Kyle W Knouse; Tian Qin; Lara R Malins; Benjamin Vokits; Scott A Shaw; Deng-Hui Bao; Fu-Liang Wei; Ting Zhou; Martin D Eastgate; Phil S Baran
Journal:  Nature       Date:  2017-04-19       Impact factor: 49.962

  2 in total

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