1. Academic Validation
  2. Asymmetric one-pot transformation of isoflavones to pterocarpans and its application in phytoalexin synthesis

Asymmetric one-pot transformation of isoflavones to pterocarpans and its application in phytoalexin synthesis

  • Nat Commun. 2020 Jun 18;11(1):3091. doi: 10.1038/s41467-020-16933-y.
Philipp Ciesielski 1 Peter Metz 2
Affiliations

Affiliations

  • 1 Fakultät Chemie und Lebensmittelchemie, Professur für Organische Chemie I, Technische Universität Dresden, Bergstraße 66, 01069, Dresden, Germany.
  • 2 Fakultät Chemie und Lebensmittelchemie, Professur für Organische Chemie I, Technische Universität Dresden, Bergstraße 66, 01069, Dresden, Germany. [email protected].
Abstract

Phytoalexins have attracted much attention due to their health-promoting effects and their vital role in plant health during the last years. Especially the 6a-hydroxypterocarpans glyceollin I and glyceollin II, which may be isolated from stressed soy Plants, possess a broad spectrum of bioactivities such as Anticancer activity and beneficial contributions against western diseases by anti-oxidative and anti-cholesterolemic effects. Aiming for a catalytic asymmetric access to these natural products, we establish the asymmetric syntheses of the natural isoflavonoids (-)-variabilin, (-)-homopterocarpin, (-)-medicarpin, (-)-3,9-dihydroxypterocarpan, and (-)-vestitol by means of an asymmetric transfer hydrogenation (ATH) reaction. We successfully adapt this pathway to the first catalytic asymmetric total synthesis of (-)-glyceollin I and (-)-glyceollin II. This eight-step synthesis features an efficient one-pot transformation of a 2'-hydroxyl-substituted isoflavone to a virtually enantiopure pterocarpan by means of an ATH and a regioselective benzylic oxidation under aerobic conditions to afford the susceptible 6a-hydroxypterocarpan skeleton.

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