1. Academic Validation
  2. Total Synthesis, Structure Revision, and Neuroprotective Effect of Hericenones C-H and Their Derivatives

Total Synthesis, Structure Revision, and Neuroprotective Effect of Hericenones C-H and Their Derivatives

  • J Org Chem. 2021 Feb 5;86(3):2602-2620. doi: 10.1021/acs.joc.0c02681.
Shoji Kobayashi 1 Tomoki Tamura 1 Mizuho Koshishiba 1 Takeshi Yasumoto 1 Satoshi Shimizu 1 Tomoki Kintaka 1 Kaoru Nagai 2
Affiliations

Affiliations

  • 1 Department of Applied Chemistry, Faculty of Engineering, Osaka Institute of Technology, 5-16-1 Ohmiya, Asahi-ku, Osaka 535-8585, Japan.
  • 2 Department of Food and Nutrition, Faculty of Human Life Science, Senri Kinran University, 5-25-1 Fujishirodai, Suita, Osaka 565-0873, Japan.
Abstract

The first total syntheses of hericenones C-H and "putative 3-hydroxyhericenone F" were achieved. Highlights of the synthesis include the straightforward construction of the resorcinol core and geranyl side chain, assembly of the natural product skeleton by sequential O-geranylation and a clay/zeolite-mediated O → C rearrangement reaction, and a biomimetic cyclization to form a variety of bicyclic natural hericenones and their congeners. The structure of the "putative 3-hydroxyhericenone F" was revised as the 5-exo cyclization product (named: hericenone Z) of epoxyhericenone C through in-depth analyses of the cyclization modes in addition to NMR spectroscopic studies. To gain insights into the biological functions of geranyl-resorcinols in Hericium erinaceus, potential neuroprotective effects against endoplasmic reticulum (ER) stress-dependent cell death were evaluated systematically to clarify a fundamental structure-activity relationship. Among the compounds assayed, the linoleate-containing hericenone analogue, i.e., the regioisomer of hericene D, was found to possess the most potent neuroprotective effect against tunicamycin and thapsigargin-induced ER stress-dependent cell death.

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