Literature DB >> 23215006

Total syntheses of multiple cladiellin natural products by use of a completely general strategy.

J Stephen Clark1, Raphaëlle Berger, Stewart T Hayes, Hans Martin Senn, Louis J Farrugia, Lynne H Thomas, Angus J Morrison, Luca Gobbi.   

Abstract

The enantioselective total syntheses of 10 cladiellin natural products have been completed, starting from the known allylic alcohol (+)-14, which can be prepared in large quantities. The bridged tricyclic core of the cladiellins has been constructed via three ring-forming reactions: (i) an intramolecular reductive cyclization between an aldehyde and an unsaturated ester, mediated by samarium(II) iodide, to form a tetrahydropyranol; (ii) reaction of a metal carbenoid, generated from a diazo ketone, with an ether to produce an ylide-like intermediate that rearranges to produce E- or Z-oxabicyclo[6.2.1]-5-undecen-9-one; and (iii) a Diels-Alder cycloaddition reaction to construct the third ring found in the core structure of the cladiellins. The key ring-forming reaction, in which a diazo ketone is converted into a bridged bicyclic ether, can be tuned to give either of the isomeric oxabicyclo[6.2.1]-5-undecen-9-ones as the major product by switching from a copper to a rhodium catalyst and selecting the appropriate reaction conditions. The tricyclic products obtained from the three-step sequence involving the Diels-Alder cycloaddition reaction can be employed as advanced intermediates to prepare a wide range of cladiellin natural products.

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Year:  2012        PMID: 23215006     DOI: 10.1021/jo302542h

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


  2 in total

1.  Synthesis and Evaluation of a 2,11-Cembranoid-Inspired Library.

Authors:  Amanda J Welford; John J Caldwell; Manjuan Liu; Meirion Richards; Nathan Brown; Cara Lomas; Graham J Tizzard; Mateusz B Pitak; Simon J Coles; Suzanne A Eccles; Florence I Raynaud; Ian Collins
Journal:  Chemistry       Date:  2016-03-01       Impact factor: 5.236

2.  Total Syntheses of 11-Acetoxy-4-deoxyasbestinin D, 4-Deoxyasbestinin C, Asbestinin-10, -20, -21 and -23.

Authors:  Angus Campbell; Ian Mat Som; Claire Wilson; J Stephen Clark
Journal:  Chemistry       Date:  2020-01-16       Impact factor: 5.236

  2 in total

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