Chemoenzymatic Synthesis of ( E,E,Z )-Humulene-Derived Natural Products

Abstract Meroterpenoid natural products derived from the 11-membered macrocycle humulene are of great interest due to their potent biological activities and intricate architectures. Whereas molecules derived from the most available (E,E,E)-humulene isomer have been thoroughly investigated, little is known of the chemistry and biological properties of natural products derived from the (E,E,Z)-isomer and derivatives thereof. Herein, we detail the first synthesis of (E,E,Z)-(10S)-hydroxyhumulene through a selective oxidative double-bond isomerization, and using this key building block along with (E,E,Z)-humulene, a suite of complex meroterpenoids was synthesized, including (±)-deoxynoreupenifeldin and neosetophomone B through a chemoenzymatic strategy and pughiinin A through a non-enzymatic route. In addition to gaining synthetic access to a suite of (E,E,Z)-humulene-derived natural products, this work revealed reactivity differences between (E,E,E)-humulene and its (E,E,Z)-isomer. Overall, these efforts culminate in the first total syntheses of three (E,E,Z)-humulene-derived natural products, providing access to this untapped subset of secondary metabolites.

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Publication Details

Journal
The Journal of Organic Chemistry
Published
2026-10-02
DOI
https://doi.org/10.1021/acs.joc.6c01732
Primary Topic
Plant-derived Lignans Synthesis and Bioactivity
Type
article
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article

Chemoenzymatic Synthesis of ( E,E,Z )-Humulene-Derived Natural Products

Alison R. H. Narayan, Hosea M. Nelson, David A. Delgadillo, Brian Valladares et al.
The Journal of Organic Chemistry
Plant-derived Lignans Synthesis and Bioactivity
article

Chemoenzymatic Synthesis of ( E,E,Z )-Humulene-Derived Natural Products

Alison R. H. Narayan, Hosea M. Nelson, David A. Delgadillo, Brian Valladares, Anthony Saucedo
article en

Abstract

Abstract Meroterpenoid natural products derived from the 11-membered macrocycle humulene are of great interest due to their potent biological activities and intricate architectures. Whereas molecules derived from the most available (E,E,E)-humulene isomer have been thoroughly investigated, little is known of the chemistry and biological properties of natural products derived from the (E,E,Z)-isomer and derivatives thereof. Herein, we detail the first synthesis of (E,E,Z)-(10S)-hydroxyhumulene through a selective oxidative double-bond isomerization, and using this key building block along with (E,E,Z)-humulene, a suite of complex meroterpenoids was synthesized, including (±)-deoxynoreupenifeldin and neosetophomone B through a chemoenzymatic strategy and pughiinin A through a non-enzymatic route. In addition to gaining synthetic access to a suite of (E,E,Z)-humulene-derived natural products, this work revealed reactivity differences between (E,E,E)-humulene and its (E,E,Z)-isomer. Overall, these efforts culminate in the first total syntheses of three (E,E,Z)-humulene-derived natural products, providing access to this untapped subset of secondary metabolites.

The Journal of Organic Chemistry
California Institute of Technology (US), University of Michigan (US)
Openalex Percentile: Top 20%
Plant-derived Lignans Synthesis and Bioactivity
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