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Small-molecule inhibitor of p53 binding to mitochondria protects mice from gamma radiation

  • Evguenia Strom
  • , Swati Sathe
  • , Pavel G. Komarov
  • , Olga B. Chernova
  • , Ivanda Pavlovska
  • , Inna Shyshynova
  • , Dmitry A. Bosykh
  • , Lyudmila G. Burdelya
  • , Roger M. Macklis
  • , Rami Skaliter
  • , Elena A. Komarova
  • , Andrei V. Gudkov
  • Cleveland BioLabs, Inc.
  • Quark Biotech, Inc.
  • Cleveland Clinic Foundation

Research output: Contribution to journalArticlepeer-review

315 Scopus citations

Abstract

p53-dependent apoptosis contributes to the side effects of cancer treatment, and genetic or pharmacological inhibition of p53 function can increase normal tissue resistance to genotoxic stress. It has recently been shown that p53 can induce apoptosis through a mechanism that does not depend on transactivation but instead involves translocation of p53 to mitochondria. To determine the impact of this p53 activity on normal tissue radiosensitivity, we isolated a small molecule named pifithrin-μ (PFTμ, 1) that inhibits p53 binding to mitochondria by reducing its affinity to antiapoptotic proteins Bcl-xL and Bcl-2 but has no effect on p53-dependent transactivation. PFTμ has a high specificity for p53 and does not protect cells from apoptosis induced by overexpression of proapoptotic protein Bax or by treatment with dexamethasone (2). PFTμ rescues primary mouse thymocytes from p53-mediated apoptosis caused by radiation and protects mice from doses of radiation that cause lethal hematopoietic syndrome. These results indicate that selective inhibition of the mitochondrial branch of the p53 pathway is sufficient for radioprotection in vivo.

Original languageEnglish
Pages (from-to)474-479
Number of pages6
JournalNature Chemical Biology
Volume2
Issue number9
DOIs
StatePublished - Sep 2006

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