Phylogenomics and metabolic engineering reveal a conserved gene cluster in Solanaceae plants for withanolide biosynthesis
Abstract
Abstract Withanolides are steroidal lactones from nightshade (Solanaceae) plants with untapped drug potential due to limited availability of minor representatives caused by lack of biosynthetic pathway knowledge. Here, we combine phylogenomics with metabolic engineering to overcome this limitation. By sequencing the genome of the medicinal plant ashwagandha ( Withania somnifera ) and comparing it with nine Solanaceae species, we discover a conserved withanolide biosynthesis gene cluster, consisting of two sub gene clusters with differing expression patterns. We establish metabolic engineering platforms in yeast ( Saccharomyces cerevisiae ) and the model plant Nicotiana benthamiana to reconstitute the first five oxidations of withanolide biosynthesis, catalysed by the cytochrome P450 monooxygenases CYP87G1, CYP88C7, and CYP749B2 and a short-chain dehydrogenase/reductase, producing the aglycone of withanoside V. Enzyme functions are conserved within both sub gene clusters in W. somnifera and between W. somnifera and Physalis pruinosa . Our work sets the basis for biotechnological withanolide production to unlock their pharmaceutical potential.
Article Details
Authors (14)
Samuel Edward Hakim
Centre of Biomolecular Drug Research, Leibniz University Hannover, Schneiderberg 38, Hannover 30167, Germany
Nancy Choudhary
Karan Malhotra
Department of Pathology, Brigham and Women’s Hospital
Jian Peng
Arne Bültemeier
Ahmed Arafa
Centre of Biomolecular Drug Research, Leibniz University Hannover, Schneiderberg 38, Hannover 30167, Germany
Ronja Friedhoff
Maximilian Bauer
Jessica Eikenberg
Claus-Peter Witte
Marco Herde
Philipp Heretsch
Institute of Organic Chemistry, Leibniz Universität Hannover, Schneiderberg 1B, Hannover 30167, Germany
Boas Pucker
Jakob Franke