Sustainable Syntheses of (−)-Jerantinines A & E and Structural Characterisation of the Jerantinine-Tubulin Complex at the Colchicine Binding Site

The jerantinine family of Aspidosperma indole alkaloids from Tabernaemontana corymbosa are potent microtubule-Targeting agents with broad spectrum anticancer activity. The natural supply of these precious metabolites has been significantly disrupted due to the inclusion of T. corymbosa on the endang...

Full description

Saved in:
Bibliographic Details
Main Authors: Smedley, C.J., Stanley, P.A., Qazzaz, M.E., Prota, A.E., Olieric, N., Collins, H., Eastman, H., Barrow, A.S., Lim, K.H., Kam, T.S., Smith, B.J., Duivenvoorden, H.M., Parker, B.S., Bradshaw, T.D., Steinmetz, M.O., Moses, J.E.
Format: Article
Language:en
Published: Nature Publishing Group 2018
Subjects:
Online Access:http://eprints.um.edu.my/18983/1/Sustainable_Syntheses_of_%28-%29-Jerantinines_A_%26_e_and_Structural_Characterisation_of_the_Jerantinine-Tubulin_Complex_at_the_Colchicine_Binding_Site.pdf
http://eprints.um.edu.my/18983/
http://dx.doi.org/10.1038/s41598-018-28880-2
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:The jerantinine family of Aspidosperma indole alkaloids from Tabernaemontana corymbosa are potent microtubule-Targeting agents with broad spectrum anticancer activity. The natural supply of these precious metabolites has been significantly disrupted due to the inclusion of T. corymbosa on the endangered list of threatened species by the International Union for Conservation of Nature. This report describes the asymmetric syntheses of (-)-jerantinines A and E from sustainably sourced (-)-Tabersonine, using a straight-forward and robust biomimetic approach. Biological investigations of synthetic (-)-jerantinine A, along with molecular modelling and X-ray crystallography studies of the tubulin-(-)-jerantinine B acetate complex, advocate an anticancer mode of action of the jerantinines operating via microtubule disruption resulting from binding at the colchicine site. This work lays the foundation for accessing useful quantities of enantiomerically pure jerantinine alkaloids for future development.