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Updated: Apr 30, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Transient induction of ING4 by Myc drives prostate epithelial cell differentiation and its disruption drives prostate
Penny L Berger1, Sander B Frank2, Veronique V Schulz1
1Authors' Affiliations: Laboratory of Integrin Signaling; Laboratory of Translational Imaging; and Laboratory of Analytical Pathology; and Van Andel Institute Graduate School, Grand Rapids; Genetics Graduate Program, Michigan State University, Lansing, Michigan; and Tranlational Genomics Research Institute and University of Arizona College of Medicine, Phoenix, Arizona.
Abstract:
The mechanisms by which Myc overexpression or Pten loss promotes prostate cancer development are poorly understood. We identified the chromatin remodeling protein, ING4, as a crucial switch downstream of Myc and Pten that is required for human prostate epithelial differentiation. Myc-induced transient expression of ING4 is required for the differentiation of basal epithelial cells into luminal cells, while sustained ING4 expression induces apoptosis. ING4 expression is lost in >60% of human primary prostate tumors. ING4 or Pten loss prevents epithelial cell differentiation, which was necessary for tumorigenesis. Pten loss prevents differentiation by blocking ING4 expression, which is rescued by ING4 re-expression. Pten or ING4 loss generates tumor cells that co-express basal and luminal markers, indicating prostate oncogenesis occurs through disruption of an intermediate step in the prostate epithelial differentiation program. Thus, we identified a new epithelial cell differentiation switch involving Myc, Pten, and ING4, which when disrupted leads to prostate tumorigenesis. Myc overexpression and Pten loss are common genetic abnormalities in prostate cancer, whereas loss of the tumor suppressor ING4 has not been reported. This is the first demonstration that transient ING4 expression is absolutely required for epithelial differentiation, its expression is dependent on Myc and Pten, and it is lost in the majority of human prostate cancers. This is the first demonstration that loss of ING4, either directly or indirectly through loss of Pten, promotes Myc-driven oncogenesis by deregulating differentiation. The clinical implication is that Pten/ING4 negative and ING4-only negative tumors may reflect two distinct subtypes of prostate cancer.
Insights
The study identifies ING4 as a key regulator in prostate cancer development. Loss of ING4 or Pten disrupts prostate epithelial cell differentiation, promoting tumorigenesis.
Area of Science:
- Molecular biology
- Cancer research
- Cell differentiation
Background:
- Mechanisms of Myc overexpression or Pten loss in prostate cancer are unclear.
- ING4's role in prostate epithelial differentiation is newly identified.
- ING4 acts as a crucial switch downstream of Myc and Pten.
Purpose of the Study:
- To elucidate the role of ING4 in prostate cancer development.
- To understand the interplay between Myc, Pten, and ING4 in epithelial differentiation.
- To investigate the frequency and implications of ING4 loss in prostate tumors.
Main Methods:
- Investigated the function of ING4 in prostate epithelial cells.
- Analyzed ING4 expression in human primary prostate tumors.
- Examined the effects of ING4 or Pten loss on cell differentiation and tumorigenesis.
Main Results:
- ING4 is essential for basal to luminal epithelial cell differentiation.
- ING4 expression is lost in over 60% of human prostate tumors.
- Loss of Pten or ING4 leads to dedifferentiated tumor cells co-expressing basal and luminal markers.
Conclusions:
- A novel differentiation switch involving Myc, Pten, and ING4 is identified.
- Disruption of this switch promotes Myc-driven prostate oncogenesis by deregulating differentiation.
- Pten/ING4 negative and ING4-only negative tumors may represent distinct prostate cancer subtypes.
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