Issue 6, 2021

Design and synthesis of herboxidiene derivatives that potently inhibit in vitro splicing

Abstract

Herboxidiene is a potent antitumor agent that targets the SF3B subunit of the spliceosome. Herboxidiene possesses a complex structural architecture with nine stereocenters and design of potent less complex structures would be of interest as a drug lead as well as a tool for studying SF3B1 function in splicing. We investigated a number of C-6 modified herboxidiene derivatives in an effort to eliminate this stereocenter and, also to understand the importance of this functionality. The syntheses of structural variants involved a Suzuki–Miyaura cross-coupling reaction as the key step. The functionalized tetrahydrofuran core has been constructed from commercially available optically active tri-O-acetyl-D-glucal. We investigated the effect of these derivatives on splicing chemistry. The C-6 alkene derivative showed very potent splicing inhibitory activity similar to herboxidiene. Furthermore, the C-6 gem-dimethyl derivative also exhibited very potent in vitro splicing inhibitory activity comparable to herboxidiene.

Graphical abstract: Design and synthesis of herboxidiene derivatives that potently inhibit in vitro splicing

Supplementary files

Article information

Article type
Paper
Submitted
18 Dec 2020
Accepted
13 Jan 2021
First published
22 Jan 2021

Org. Biomol. Chem., 2021,19, 1365-1377

Design and synthesis of herboxidiene derivatives that potently inhibit in vitro splicing

A. K. Ghosh, S. R. Allu, G. C. Reddy, A. G. Lopez, P. Mendez and M. S. Jurica, Org. Biomol. Chem., 2021, 19, 1365 DOI: 10.1039/D0OB02532A

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