Abstract
Pilicides block pili formation by binding to pilus chaperones and blocking their function in the chaperone/usher pathway in E. coli. Various C-2 substituents were introduced on the pilicide scaffold by design and synthetic method developments. Experimental evaluation showed that proper substitution of this position affected the biological activity of the compound. Aryl substituents resulted in pilicides with significantly increased potencies as measured in pili-dependent biofilm and hemagglutination assays. The structural basis of the PapD chaperone?pilicide interactions was determined by X-ray crystallography. © 2010 American Chemical Society.
Cite
CITATION STYLE
Chorell, E., Pinkner, J. S., Phan, G., Edvinsson, S., Buelens, F., Remaut, H., … Almqvist, F. (2010). Design and synthesis of C-2 substituted thiazolo and dihydrothiazolo ring-fused 2-pyridones: Pilicides with increased antivirulence activity. Journal of Medicinal Chemistry, 53(15), 5690–5695. https://doi.org/10.1021/jm100470t
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.