Total synthesis and chemical stability of pseudouridimycin†
Christopher F. Cain,Aaron M. Scott,Matthew P. Sarnowski,Juan R. Del Valle
Chemical Communications Pub Date : 01/20/2022 00:00:00 , DOI:10.1039/D1CC07059B
Abstract

We report the chemical synthesis of pseudouridimycin (1), an antimicrobial natural product that potently and selectively inhibits bacterial RNA polymerase. Chemical stability studies revealed intramolecular hydroxamate bond scission to be a major decomposition pathway for 1 in aqueous buffer. Replacement of the hydroxamate bond with a tertiary amide, as in 16, afforded a conformational isostere resistant to degradation. These studies pave the way for the design and synthesis of analogues with improved chemical stability and biological activity.

Graphical abstract: Total synthesis and chemical stability of pseudouridimycin