1. Academic Validation
  2. General approach for preparing epidithiodioxopiperazines from trioxopiperazine precursors: enantioselective total syntheses of (+)- and (-)-gliocladine C, (+)-leptosin D, (+)-T988C, (+)-bionectin A, and (+)-gliocladin A

General approach for preparing epidithiodioxopiperazines from trioxopiperazine precursors: enantioselective total syntheses of (+)- and (-)-gliocladine C, (+)-leptosin D, (+)-T988C, (+)-bionectin A, and (+)-gliocladin A

  • J Am Chem Soc. 2013 Mar 13;135(10):4117-28. doi: 10.1021/ja400315y.
John E DeLorbe 1 David Horne Richard Jove Steven M Mennen Sangkil Nam Fang-Li Zhang Larry E Overman
Affiliations

Affiliation

  • 1 Department of Chemistry, 1102 Natural Sciences II, University of California, Irvine, California 92697-2025, USA.
Abstract

A common strategy for preparing tryptophan-derived epidithiodioxopiperazine (ETP) Natural Products containing a hydroxyl substituent adjacent to a quaternary carbon stereocenter is reported. This strategy is exemplified by enantioselective total syntheses of four heptacyclic ETP natural products--gliocladine C (6), leptosin D (7), T988C (8), and bionectin A (9)--starting with the di-(tert-butoxycarbonyl) derivative 17 of the trioxopiperazine natural product gliocladin C, which is readily available by enantioselective chemical synthesis. In addition, total syntheses of the enantiomer of gliocladine C (ent-6) and gliocladin A (11), the di(methylthio) congener of bionectin A, are reported. These syntheses illustrate a synthetic strategy wherein diversity in the dioxopiperazine unit of ETP Natural Products is introduced at a late stage in a synthetic sequence. In vitro cytotoxicity of compounds in this series against invasive human prostrate (DU145) and melanoma (A2058) Cancer cell lines is described and compared to that of chaetocin A (4).

Figures
Products
  • Cat. No.
    Product Name
    Description
    Target
    Research Area
  • HY-142102
    ETP