Novel allosteric mechanism of p53 activation by small molecules for targeted anticancer therapy

Author:

Zawacka-Pankau JoannaORCID,Grinkevich Vera V.,Burmakin Mikhail,Vema Aparna,Fawkner Karin,Issaeva Natalia,Andreotti Virginia,Dickinson Eleanor R.,Hedström Elisabeth,Spinnler Clemens,Inga Alberto,Larsson Lars-Gunnar,Karlén Anders,Tarasova Olga,Poroikov Vladimir,Lavrenov Sergey,Preobrazhenskaya Maria,Barran Perdita E.,Okorokov Andrei L.,Selivanova Galina

Abstract

AbstractGiven the immense significance of p53 restoration for anti-cancer therapy, elucidation of the mechanisms of action of p53-activating molecules is of the utmost importance. Here we report a discovery of novel allosteric modulation of p53 by small molecules, which is an unexpected turn in the p53 story. We identified a structural element involved in p53 regulation, whose targeting by RITA, PpIX and licofelone block the binding of p53 inhibitors, MDM2 and MDMX. Deletion and mutation analysis followed by molecular modeling, identified the key p53 residues S33 and S37 targeted by RITA and PpIX. We propose that the binding of small molecules to the identified site induces a conformational trap preventing p53 from the interaction with MDM2 and MDMX. These results point to a high potential of allosteric activators. Our study provides the basis for the development of therapeutics with a novel mechanism of action, thus extending the p53 pharmacological potential.

Publisher

Cold Spring Harbor Laboratory

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