Phosphorylation of the androgen receptor by PIM1 in hormone refractory prostate cancer

S Ha1, N J Iqbal, P Mita

  • 1Department of Urology, New York University School of Medicine, New York, NY 10016, USA.

Oncogene
|September 19, 2012
PubMed

Insights

The PIM1 kinase phosphorylates the androgen receptor (AR) at serine 213, impacting gene transcription and promoting aggressive prostate cancer. This phosphorylation is linked to hormone-refractory and recurrent prostate cancers.

Area of Science:

  • Molecular Biology
  • Oncology
  • Biochemistry

Background:

  • Cellular signaling integrates with androgen receptor (AR) signaling via AR phosphorylation by kinases.
  • The specific kinases and functional outcomes of AR phosphorylation remain incompletely understood.
  • PIM1, a kinase overexpressed in prostate cancer, was identified via bioinformatics as a potential kinase for AR serine 213 (S213).

Purpose of the Study:

  • To investigate the role of PIM1 in phosphorylating AR at S213.
  • To determine the functional consequences of PIM1-mediated AR phosphorylation on gene transcription.
  • To assess the prevalence and clinical significance of P-AR S213 in prostate cancer.

Main Methods:

  • Utilized a phosphorylation site-specific antibody to detect AR S213 phosphorylation.
  • Performed in vitro kinase assays with wild-type and mutant PIM1.
  • Analyzed AR-mediated transcriptional activity using reporter gene assays and endogenous gene expression.
  • Examined P-AR S213 expression in prostate cancer tissue microarrays.

Main Results:

  • PIM1 directly phosphorylates AR at S213 in a ligand-independent manner, confirmed by in vitro assays and specific antibodies.
  • PIM1 overexpression increases AR S213 phosphorylation in prostate cancer cell lines, which is reduced by PIM kinase inhibitors.
  • PIM1-mediated AR phosphorylation reduces androgen-mediated transcription of key genes like PSA but increases transcription of others like IL6 and cyclin A1.
  • High P-AR S213 expression in prostate tumors correlates with hormone-refractory and biochemically recurrent cancers.

Conclusions:

  • PIM1-mediated phosphorylation of AR at S213 is a significant mechanism influencing AR transcriptional activity.
  • P-AR S213 is a prevalent marker in aggressive prostate cancers, associated with hormone refractoriness and recurrence.
  • Targeting PIM1 or modulating AR S213 phosphorylation may offer therapeutic strategies for advanced prostate cancer.

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