Gene expression profiling reveals regulation of ERK phosphorylation by androgen-induced tumor suppressor U19/EAF2 in the mouse prostate

Fei Su, Bruna R.S. Correa, Jianhua Luo, Ricardo Z.N. Vencio, Laura E. Pascal, Zhou Wang

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

U19/EAF2 is regulated by androgens in the prostate and capable of regulating transcriptional elongation of RNA Pol II via interaction with the ELL family proteins. Inactivation of U19/EAF2 induces tumorigenesis in multiple organs; however the mechanism of U19/EAF2 tumor suppression remains unclear. To elucidate potential mechanisms of U19/EAF2 action, we performed cDNA microarray analysis and identified 164 mRNA transcripts regulated by U19/EAF2 in the mouse ventral prostate. Bioinformatics analysis indicated that U19/EAF2 knockout activates the RAS-BRAF-ERK signaling pathway, which is known to play important roles in carcinogenesis. qPCR verified increased expression of BRAF mRNA, and immunostaining and Western blot analysis demonstrated increased expression of p-ERK at the protein level suggested U19/EAF2 knockout activates this important pathway. These findings indicate that loss of EAF2 up-regulates transcription of RAS cascade genes including Grb2, PI3K, and BRAF, leading to elevated p-ERK levels, which may represent a major functional role of U19/EAF2 in the prostate. Furthermore, these observations suggest that U19/EAF2 is a key player in crosstalk between androgen receptor and the RAS-BRAF-ERK signaling pathway.

Original languageEnglish (US)
Pages (from-to)247-261
Number of pages15
JournalCancer Microenvironment
Volume6
Issue number3
DOIs
StatePublished - Dec 2013
Externally publishedYes

Keywords

  • EAF2
  • ERK
  • Prostate cancer

ASJC Scopus subject areas

  • Oncology
  • Cancer Research

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