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Investigation of the electrophilic reactivity of the cytotoxic marine alkaloid discorhabdin B†
Cary F. C. Lam,Tanja Grkovic,A. Norrie Pearce,Brent R. Copp
Organic & Biomolecular Chemistry Pub Date : 02/06/2012 00:00:00 , DOI:10.1039/C2OB07090A
Abstract

The mechanisms of action of the cytotoxic marine pyrroloiminoquinone alkaloids the discorhabdins are unknown. We have determined that discorhabdin B acts as an electrophile towards biomimetic thiol nucleophiles leading to debrominated adducts. In contrast, less potent cytotoxins discorhabdins D and Q failed to react, supporting an SAR model of cytotoxicity requiring an orchestrated combination of an electrophilic Δ1 carbon centre and a nucleophilic N-18 amine for potent activity. The stereospecific nature of nucleophile trapping exhibited by both enantiomers of discorhabdin B implies the biogenesis of ovothiol A substituted discorhabdins H, H2, K and K2 need not be mediated by enzymatic processes.

Graphical abstract: Investigation of the electrophilic reactivity of the cytotoxic marine alkaloid discorhabdin B
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