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LncRNA-dependent mechanisms of androgen-receptor-regulated gene activation programs

Nature, ISSN: 0028-0836, Vol: 500, Issue: 7464, Page: 598-602
2013
  • 575
    Citations
  • 0
    Usage
  • 553
    Captures
  • 3
    Mentions
  • 48
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    575
    • Citation Indexes
      573
    • Patent Family Citations
      1
      • Patent Families
        1
    • Policy Citations
      1
      • Policy Citation
        1
  • Captures
    553
  • Mentions
    3
    • News Mentions
      2
      • News
        2
    • References
      1
      • Wikipedia
        1
  • Social Media
    48
    • Shares, Likes & Comments
      48
      • Facebook
        48

Most Recent News

The Long Noncoding RNA ANRIL Promotes Cell Apoptosis in Lipopolysaccharide-Induced Acute Kidney Injury Mediated by the TLR4/Nuclear Factor-Kappa B Pathway

ABSTRACT Background/Aims: The purpose of this study is to analyze the expression and biological function of lncRNA ANRIL, microRNA-199a, TLR4, and nuclear factor-kappa B (NF-κB)

Article Description

Although recent studies have indicated roles of long non-coding RNAs (lncRNAs) in physiological aspects of cell-type determination and tissue homeostasis, their potential involvement in regulated gene transcription programs remains rather poorly understood. The androgen receptor regulates a large repertoire of genes central to the identity and behaviour of prostate cancer cells, and functions in a ligand-independent fashion in many prostate cancers when they become hormone refractory after initial androgen deprivation therapy. Here we report that two lncRNAs highly overexpressed in aggressive prostate cancer, PRNCR1 (also known as PCAT8) and PCGEM1, bind successively to the androgen receptor and strongly enhance both ligand-dependent and ligand-independent androgen-receptor-mediated gene activation programs and proliferation in prostate cancer cells. Binding of PRNCR1 to the carboxy-terminally acetylated androgen receptor on enhancers and its association with DOT1L appear to be required for recruitment of the second lncRNA, PCGEM1, to the androgen receptor amino terminus that is methylated by DOT1L. Unexpectedly, recognition of specific protein marks by PCGEM1-recruited pygopus 2 PHD domain enhances selective looping of androgen-receptor-bound enhancers to target gene promoters in these cells. In 'resistant' prostate cancer cells, these overexpressed lncRNAs can interact with, and are required for, the robust activation of both truncated and full-length androgen receptor, causing ligand-independent activation of the androgen receptor transcriptional program and cell proliferation. Conditionally expressed short hairpin RNA targeting these lncRNAs in castration-resistant prostate cancer cell lines strongly suppressed tumour xenograft growth in vivo. Together, these results indicate that these overexpressed lncRNAs can potentially serve as a required component of castration-resistance in prostatic tumours.

Bibliographic Details

Yang, Liuqing; Lin, Chunru; Jin, Chunyu; Yang, Joy C; Tanasa, Bogdan; Li, Wenbo; Merkurjev, Daria; Ohgi, Kenneth A; Meng, Da; Zhang, Jie; Evans, Christopher P; Rosenfeld, Michael G

Springer Science and Business Media LLC

Multidisciplinary

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