Synlett 2014; 25(11): 1547-1549
DOI: 10.1055/s-0033-1339116
letter
© Georg Thieme Verlag Stuttgart · New York

Synthesis of Methyl Axenoside and Methyl 3-epi-Axenoside via Ate-Mediated Allylic Substitution (AMAS)

Brian A. Ondrusek
Department of Chemistry and Biochemistry, Florida State University, Tallahassee, FL, 32306-4390, USA   Fax: +1(850)6648281   Email: mcquade@chem.fsu.edu
,
D. Tyler McQuade*
Department of Chemistry and Biochemistry, Florida State University, Tallahassee, FL, 32306-4390, USA   Fax: +1(850)6648281   Email: mcquade@chem.fsu.edu
› Author Affiliations
Further Information

Publication History

Received: 09 March 2014

Accepted after revision: 16 April 2014

Publication Date:
28 May 2014 (online)


Abstract

An ate-mediated allylic substitution (AMAS) of vinylboronates is utilized in the divergent syntheses of the sugars methyl axenoside and methyl 3-epi-axenoside. Other key steps of the synthesis involve the dihydroxylation of the resulting allylic alcohol and selective oxidation of the resultant diol. Benefits of this methodology are also discussed.

Supporting Information

 
  • References and Notes


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    • Dutomycin:
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    • For other de novo syntheses of deoxy sugars, see:
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  • 8 See Supporting Information for a discussion on unsuccessful methodologies. All compounds not found in the article will be numbered sequentially beginning with 17.
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    • For references on the dihydroxylation of alkenes bearing allylic heteroatoms, see:
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  • 11 See Supporting Information for additional procedural information.
  • 12 Sharif EU, Wang H.-YL, Akhmedov NG, O’Doherty GA. Org. Lett. 2014; 16: 492
  • 13 See Supporting Information for a discussion on unsuccessful strategies toward acetonide deprotection–cyclization.
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  • 15 The Myers group4 suggests that these α/β ratios are a thermodynamic mixture.