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Chronic cisplatin treatment promotes enhanced damage repair and tumor progression in a mouse model of lung cancer

  • Trudy G. Oliver
  • , Kim L. Mercer
  • , Leanne C. Sayles
  • , James R. Burke
  • , Diana Mendus
  • , Katherine S. Lovejoy
  • , Mei Hsin Cheng
  • , Aravind Subramanian
  • , David Mu
  • , Scott Powers
  • , Denise Crowley
  • , Roderick T. Bronson
  • , Charles A. Whittaker
  • , Arjun Bhutkar
  • , Stephen J. Lippard
  • , Todd Golub
  • , Juergen Thomale
  • , Tyler Jacks
  • , E. Alejandro Sweet-Cordero
  • Massachusetts Institute of Technology
  • Howard Hughes Medical Institute
  • Stanford University
  • University of Duisburg-Essen
  • Pennsylvania State University
  • Tufts University
  • Dana-Farber Cancer Institute

Research output: Contribution to journalArticlepeer-review

194 Scopus citations

Abstract

Chemotherapy resistance is a major obstacle in cancer treatment, yet the mechanisms of response to specific therapies have been largely unexplored in vivo. Employing genetic, genomic, and imaging approaches, we examined the dynamics of response to a mainstay chemotherapeutic, cisplatin, in multiple mouse models of human non-small-cell lung cancer (NSCLC). We show that lung tumors initially respond to cisplatin by sensing DNA damage, undergoing cell cycle arrest, and inducing apoptosis - leading to a significant reduction in tumor burden. Importantly, we demonstrate that this response does not depend on the tumor suppressor p53 or its transcriptional target, p21. Prolonged cisplatin treatment promotes the emergence of resistant tumors with enhanced repair capacity that are cross-resistant to platinum analogs, exhibit advanced histopathology, and possess an increased frequency of genomic alterations. Cisplatin-resistant tumors express elevated levels of multiple DNA damage repair and cell cycle arrest-related genes, including p53-inducible protein with a death domain (Pidd). We demonstrate a novel role for PIDD as a regulator of chemotherapy response in human lung tumor cells.

Original languageEnglish
Pages (from-to)837-852
Number of pages16
JournalGenes and Development
Volume24
Issue number8
DOIs
StatePublished - Apr 15 2010

Keywords

  • Chemotherapy resistance
  • Cisplatin
  • Kras
  • Lung cancer
  • Mouse models
  • p53

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