Combined inhibition of MAP kinase and KIT signaling synergistically destabilizes ETV1 and suppresses GIST tumor growth Journal Article


Authors: Ran, L.; Sirota, I.; Cao, Z.; Murphy, D.; Shukla, S.; Xie, Y.; Kaufmann, M. C.; Gao, D.; Zhu, S.; Rossi, F.; Wongvipat, J.; Taguchi, T.; Tap, W. D.; Mellinghoff, I. K.; Besmer, P.; Antonescu, C. R.; Chen, Y.; Chi, P.
Article Title: Combined inhibition of MAP kinase and KIT signaling synergistically destabilizes ETV1 and suppresses GIST tumor growth
Abstract: Gastrointestinal stromal tumor (GIST), originating from the interstitial cells of Cajal (ICC), is characterized by frequent activating mutations of the KIT receptor tyrosine kinase. Despite the clinical success of imatinib, which targets KIT, most patients with advanced GIST develop resistance and eventually die of the disease. The ETS family transcription factor ETV1 is a master regulator of the ICC lineage. Using mouse models of Kit activation and Etv1 ablation, we demonstrate that ETV1 is required for GIST initiation and proliferation in vivo, validating it as a therapeutic target. We further uncover a positive feedback circuit where MAP kinase activation downstream of KIT stabilizes the ETV1 protein, and ETV1 positively regulates KIT expression. Combined targeting of ETV1 stability by imatinib and MEK162 resulted in increased growth suppression in vitro and complete tumor regression in vivo. The combination strategy to target ETV1 may provide an effective therapeutic strategy in GIST clinical management. ©2015 American Association for Cancer Research.
Journal Title: Cancer Discovery
Volume: 5
Issue: 3
ISSN: 2159-8274
Publisher: American Association for Cancer Research  
Date Published: 2015-03-01
Start Page: 304
End Page: 315
Language: English
DOI: 10.1158/2159-8290.CD-14-0985
PROVIDER: scopus
PMCID: PMC4355391
PUBMED: 25572173
DOI/URL:
Notes: Export Date: 2 April 2015 -- Source: Scopus
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors
  1. Yu Chen
    133 Chen
  2. Cristina R Antonescu
    895 Antonescu
  3. Ping Chi
    172 Chi
  4. Ferdinando Rossi
    23 Rossi
  5. Peter Besmer
    115 Besmer
  6. William Douglas Tap
    372 Tap
  7. Leili Ran
    20 Ran
  8. Zhen Cao
    22 Cao
  9. Inna Sirota
    6 Sirota
  10. Yuanyuan Xie
    10 Xie
  11. Shipra Shukla
    12 Shukla
  12. Dong Gao
    28 Gao
  13. Devan Anne Murphy
    11 Murphy
  14. Sinan Zhu
    2 Zhu