Synthesis of the 8,19‐Epoxysteroid Eurysterol A
We report the first chemical synthesis of eurysterol A, a cytotoxic and antifungal marine steroidal sulfate with a unique C8−C19 oxy‐bridged cholestane skeleton. After C19 hydroxylation of cholesteryl acetate, used as an inexpensive commercial starting material, the challenging oxidative functionali...
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Veröffentlicht in: | Chemistry : a European journal 2020-04, Vol.26 (19), p.4256-4260 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We report the first chemical synthesis of eurysterol A, a cytotoxic and antifungal marine steroidal sulfate with a unique C8−C19 oxy‐bridged cholestane skeleton. After C19 hydroxylation of cholesteryl acetate, used as an inexpensive commercial starting material, the challenging oxidative functionalization of ring B was achieved by two different routes to set up a 5α‐hydroxy‐7‐en‐6‐one moiety. As a key step, an intramolecular oxa‐Michael addition was exploited to close the oxy‐bridge (8β,19‐epoxy unit). DFT calculations show this reversible transformation being exergonic by about −30 kJ mol−1. Along the optimized (scalable) synthetic sequence, the target natural product was obtained in only 11 steps in 5 % overall yield. In addition, an access to (isomeric) 7β,19‐epoxy steroids with a previously unknown pentacyclic ring system was discovered.
From an animal sterol to a bioactive marine natural product: The first synthesis of eurysterol A, a cytotoxic and antifungal sulfated sterol with a unique 8,19‐epoxy bridge spanning ring B, was elaborated exploiting an intramolecular oxa‐Michael reaction as a key step. |
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ISSN: | 0947-6539 1521-3765 |
DOI: | 10.1002/chem.202000585 |