Androgen receptor coactivators that inhibit prostate cancer growth

Garrett Daniels1, Ruchi Jha1, Ying Shen1

  • 1Department of Pathology, New York University School of Medicine New York, NY.

Insights

Androgen receptor (AR) coactivators can suppress or promote prostate cancer (PCa) growth. Nuclear forms inhibit PCa growth, while cytoplasmic forms enhance it, offering potential therapeutic targets.

Area of Science:

  • Molecular Biology
  • Oncology
  • Endocrinology

Background:

  • Androgen receptor (AR) plays a dual role in prostate cancer (PCa) growth, mediating both proliferation and suppression.
  • Transcriptional coactivators modulate AR activity, influencing AR target gene programs and cellular processes.
  • Dysregulation of AR coactivator expression or localization is implicated in the switch between proliferative and anti-proliferative functions.

Purpose of the Study:

  • To review the expression and function of AR coactivators with growth-suppressive roles in PCa.
  • To elucidate the distinct roles of nuclear versus cytoplasmic forms of coactivators in PCa progression.
  • To explore the therapeutic potential of targeting AR coactivator pathways.

Main Methods:

  • Literature review of AR coactivators including ARA70, p44, TBLR1, and ART-27.
  • Analysis of coactivator expression patterns in benign prostate epithelial cells versus PCa cells.
  • Examination of coactivator localization (nuclear vs. cytoplasmic) and its functional consequences.

Main Results:

  • Nuclear forms of ARA70, p44, TBLR1, and ART-27 inhibit PCa growth in an androgen-dependent manner.
  • Cytoplasmic forms of these coactivators promote PCa growth and invasion, often in an androgen-independent manner.
  • ART-27 acts as a corepressor for endogenous AR target genes, despite initial characterization as a coactivator.

Conclusions:

  • The subcellular localization of AR coactivators is critical in determining their impact on PCa growth and invasion.
  • Understanding the molecular switches governing AR coactivator function could reveal novel therapeutic strategies for PCa.
  • Targeting the dysregulated cytoplasmic forms of coactivators may offer a pathway to inhibit androgen-independent PCa progression.

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