Aspergilasines A–D: Four Merocytochalasans with New Carbon Skeletons from Aspergillus flavipes QCS12

Organic Letters
2017.0

Abstract

Aspergilasines A−D (1−4), four merocytochalasans with new skeletons, were isolated from the liquid culture broth of Aspergillus flavipes QCS12. Aspergilasine A (1) possesses a uniquely caged pentacyclo[7.2.0.14,11.02,7.05,10]dodecane skeleton with an unexpected cyclobutane ring that formed by the fusion of two epicoccine moieties via two [3 + 2] cycloadditions. Aspergilasines B−D (2−4) are key biosynthetic intermediates of epicochalasine B that fit well with our previous biosynthetic proposal.

Knowledge Graph

Similar Paper

Aspergilasines A–D: Four Merocytochalasans with New Carbon Skeletons from <i>Aspergillus flavipes</i> QCS12
Organic Letters 2017.0
Epicochalasines A and B: Two Bioactive Merocytochalasans Bearing Caged Epicoccine Dimer Units from <i>Aspergillus flavipes</i>
Angewandte Chemie International Edition 2016.0
Asperflavipine A: A Cytochalasan Heterotetramer Uniquely Defined by a Highly Complex Tetradecacyclic Ring System from <i>Aspergillus flavipes</i> QCS12
Angewandte Chemie International Edition 2017.0
Flavipesines A and B and Asperchalasines E–H: Cytochalasans and Merocytochalasans from <i>Aspergillus flavipes</i>
Journal of Natural Products 2019.0
Flavipesines A and B and Asperchalasines E–H: Cytochalasans and Merocytochalasans from <i>Aspergillus flavipes</i>
Journal of Natural Products 2019.0
Cysteine Residue Containing Merocytochalasans and 17,18-<i>seco</i>-Aspochalasins from <i>Aspergillus micronesiensis</i>
Journal of Natural Products 2019.0
Bisaspochalasins A–C: Three Cytochalasan Homodimers with Highly Fused Ring System from an Endophytic <i>Aspergillus flavipes</i>
Organic Letters 2020.0
Asperchalasine A, a Cytochalasan Dimer with an Unprecedented Decacyclic Ring System, from <i>Aspergillus flavipes</i>
Angewandte Chemie International Edition 2015.0
Asperchalasine A, a Cytochalasan Dimer with an Unprecedented Decacyclic Ring System, from <i>Aspergillus flavipes</i>
Angewandte Chemie International Edition 2015.0
Cysteine Residue Containing Merocytochalasans and 17,18-<i>seco</i>-Aspochalasins from <i>Aspergillus micronesiensis</i>
Journal of Natural Products 2019.0