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Stereocontrolled protein surface recognition using chiral oligoamide proteomimetic foldamers.
Azzarito, Valeria; Miles, Jennifer A; Fisher, Julie; Edwards, Thomas A; Warriner, Stuart L; Wilson, Andrew J.
Afiliación
  • Azzarito V; School of Chemistry , University of Leeds , Woodhouse Lane , Leeds , LS2 9JT , UK . Email: A.J.Wilson@leeds.ac.uk.
  • Miles JA; Astbury Centre for Structural and Molecular Biology , University of Leeds , Woodhouse Lane , Leeds , LS2 9JT , UK.
  • Fisher J; School of Chemistry , University of Leeds , Woodhouse Lane , Leeds , LS2 9JT , UK . Email: A.J.Wilson@leeds.ac.uk.
  • Edwards TA; Astbury Centre for Structural and Molecular Biology , University of Leeds , Woodhouse Lane , Leeds , LS2 9JT , UK.
  • Warriner SL; School of Chemistry , University of Leeds , Woodhouse Lane , Leeds , LS2 9JT , UK . Email: A.J.Wilson@leeds.ac.uk.
  • Wilson AJ; Astbury Centre for Structural and Molecular Biology , University of Leeds , Woodhouse Lane , Leeds , LS2 9JT , UK.
Chem Sci ; 6(4): 2434-2443, 2015 Apr 01.
Article en En | MEDLINE | ID: mdl-29308155
The development of foldamers capable of selective molecular recognition of solvent exposed protein surfaces represents an outstanding challenge in supramolecular chemical biology. Here we introduce an oligoamide foldamer with well-defined conformation that bears all the hallmarks of an information rich oligomer. Specifically, the foldamer recognizes its target protein hDM2 leading to inhibition of its protein-protein interaction with p53 in a manner that depends upon the composition, spatial projection and stereochemistry of functional groups appended to the scaffold. Most significantly, selective inhibition of p53/hDM2 can be achieved against four other targets and the selectivity for p53/hDM2 inhibition versus Mcl-1/NOXA-B inhibition is critically dependent upon the stereochemistry of the helix mimetic.