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Oncogenic ERG Represses PI3K Signaling through Downregulation of IRS2
Ninghui Mao1, Dong Gao1, Wenhuo Hu1
1Human Oncogenesis and Pathogenesis Program, Memorial Sloan Kettering Cancer Center, New York, New York.
Abstract:
Genomic rearrangements leading to the aberrant expression of ERG are the most common early events in prostate cancer and are significantly enriched for the concomitant loss of PTEN. Genetically engineered mouse models reveal that ERG overexpression alone is not sufficient to induce tumorigenesis, but combined loss of PTEN results in an aggressive invasive phenotype. Here, we show that oncogenic ERG repressed PI3K signaling through direct transcriptional suppression of IRS2, leading to reduced RTK levels and activity. In accordance with this finding, ERG-positive human prostate cancers had a repressed AKT gene signature and transcriptional downregulation of IRS2. Although overexpression of IRS2 activated PI3K signaling, promoting cell migration in a PI3K-dependent manner, this did not fully recapitulate the phenotype seen with loss of PTEN as PI3K signaling is not as robust as observed in the setting of loss of PTEN. Importantly, deletions of the PTEN locus, which promotes active PI3K signaling, were among the most significant copy-number alterations that co-occurred with ERG genomic rearrangements. This work provides insight on how initiating oncogenic events may directly influence the selection of secondary concomitant alterations to promote oncogenic signaling during tumor evolution. SIGNIFICANCE: This work provides insight on how initiating oncogenic events may directly influence the selection of secondary concomitant alterations to promote tumorigenesis.
Insights
Oncogenic ERG suppresses PI3K signaling by reducing IRS2, but PTEN loss is crucial for aggressive prostate cancer. This reveals how early genetic events drive tumor evolution by selecting for secondary alterations.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Genomic rearrangements of ERG are common in prostate cancer, often with PTEN loss.
- ERG overexpression alone doesn't cause tumors, but combined with PTEN loss, it leads to aggressive disease.
Purpose of the Study:
- To investigate the molecular mechanisms linking ERG, PTEN loss, and PI3K signaling in prostate cancer.
- To understand how initiating oncogenic events influence secondary alterations during tumor progression.
Main Methods:
- Utilized genetically engineered mouse models.
- Analyzed ERG's effect on PI3K signaling pathway components like IRS2.
- Examined human prostate cancer datasets for ERG, PTEN, IRS2, and AKT alterations.
- Investigated the role of IRS2 overexpression in PI3K signaling and cell migration.
Main Results:
- Oncogenic ERG transcriptionally suppresses IRS2, reducing RTK signaling.
- ERG-positive human prostate cancers show repressed AKT signaling and downregulated IRS2.
- IRS2 overexpression activates PI3K signaling and cell migration, but less robustly than PTEN loss.
- PTEN locus deletions frequently co-occur with ERG rearrangements, promoting PI3K signaling.
Conclusions:
- ERG's suppression of IRS2 is an early event in prostate cancer that influences PI3K pathway activity.
- The combined effect of ERG and PTEN loss drives an aggressive invasive phenotype.
- This study elucidates how initial oncogenic events guide the selection of secondary genetic alterations to promote tumorigenesis.
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