SOX2 promotes lineage plasticity and antiandrogen resistance in TP53-and RB1-deficient prostate cancer Journal Article


Authors: Mu, P.; Zhang, Z.; Benelli, M.; Karthaus, W. R.; Hoover, E.; Chen, C. C.; Wongvipat, J.; Ku, S. Y.; Gao, D.; Cao, Z.; Shah, N.; Adams, E. J.; Abida, W.; Watson, P. A.; Prandi, D.; Huang, C. H.; De Stanchina, E.; Lowe, S. W.; Ellis, L.; Beltran, H.; Rubin, M. A.; Goodrich, D. W.; Demichelis, F.; Sawyers, C. L.
Article Title: SOX2 promotes lineage plasticity and antiandrogen resistance in TP53-and RB1-deficient prostate cancer
Abstract: Some cancers evade targeted therapies through a mechanism known as lineage plasticity, whereby tumor cells acquire phenotypic characteristics of a cell lineage whose survival no longer depends on the drug target. We use in vitro and in vivo human prostate cancer models to show that these tumors can develop resistance to the antiandrogen drug enzalutamide by a phenotypic shift from androgen receptor (AR)-dependent luminal epithelial cells to AR-independent basal-like cells. This lineage plasticity is enabled by the loss of TP53 and RB1 function, is mediated by increased expression of the reprogramming transcription factor SOX2, and can be reversed by restoring TP53 and RB1 function or by inhibiting SOX2 expression. Thus, mutations in tumor suppressor genes can create a state of increased cellular plasticity that, when challenged with antiandrogen therapy, promotes resistance through lineage switching. © 2016 by the American Association for the Advancement of Science; all rights reserved.
Journal Title: Science
Volume: 355
Issue: 6320
ISSN: 0036-8075
Publisher: American Association for the Advancement of Science  
Date Published: 2017-01-06
Start Page: 84
End Page: 88
Language: English
DOI: 10.1126/science.aah4307
PROVIDER: scopus
PMCID: PMC5247742
PUBMED: 28059768
DOI/URL:
Notes: Article -- Export Date: 2 February 2017 -- Source: Scopus
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MSK Authors
  1. Charles L Sawyers
    219 Sawyers
  2. Philip A Watson
    25 Watson
  3. Scott W Lowe
    238 Lowe
  4. Wassim Abida
    143 Abida
  5. Neel Shah
    7 Shah
  6. Zhen Cao
    22 Cao
  7. Ping Mu
    8 Mu
  8. Dong Gao
    28 Gao
  9. Zeda Zhang
    17 Zhang
  10. Chun-Hao   Huang
    24 Huang
  11. Chi-Chao   Chen
    18 Chen
  12. Elizabeth Janine Adams
    4 Adams
  13. Elizabeth   Hoover
    9 Hoover