CDK4 Amplification Reduces Sensitivity to CDK4/6 Inhibition in Fusion-Positive Rhabdomyosarcoma
Mary E Olanich1, Wenyue Sun1, Stephen M Hewitt2
1Cancer Molecular Pathology Section, Center for Cancer Research, National Cancer Institute, NIH, Bethesda, Maryland.
Purpose:
Rhabdomyosarcoma (RMS) is the most common pediatric soft tissue sarcoma and includes a PAX3- or PAX7-FOXO1 fusion-positive subtype. Amplification of chromosomal region 12q13-q14, which contains the CDK4 proto-oncogene, was identified in an aggressive subset of fusion-positive RMS. CDK4/6 inhibitors have antiproliferative activity in CDK4-amplified liposarcoma and neuroblastoma, suggesting CDK4/6 inhibition as a potential therapeutic strategy in fusion-positive RMS.
Experimental Design:
We examined the biologic consequences of CDK4 knockdown, CDK4 overexpression, and pharmacologic CDK4/6 inhibition by LEE011 in fusion-positive RMS cell lines and xenografts.
Results:
Knockdown of CDK4 abrogated proliferation and transformation of 12q13-14-amplified and nonamplified fusion-positive RMS cells via G1-phase cell-cycle arrest. This arrest was mediated by reduced RB phosphorylation and E2F-responsive gene expression. Significant differences in E2F target expression, cell-cycle distribution, proliferation, or transformation were not observed in RMS cells overexpressing CDK4. Treatment with LEE011 phenocopied CDK4 knockdown, decreasing viability, RB phosphorylation, and E2F-responsive gene expression and inducing G1-phase cell-cycle arrest. Although all fusion-positive cell lines showed sensitivity to CDK4/6 inhibition, there was diminished sensitivity associated with CDK4 amplification and overexpression. This variable responsiveness to LEE011 was recapitulated in xenograft models of CDK4-amplified and nonamplified fusion-positive RMS.
Conclusions:
Our data demonstrate that CDK4 is necessary but overexpression is not sufficient for RB-E2F-mediated G1-phase cell-cycle progression, proliferation, and transformation in fusion-positive RMS. Our studies indicate that LEE011 is active in the setting of fusion-positive RMS and suggest that low CDK4-expressing fusion-positive tumors may be particularly susceptible to CDK4/6 inhibition.
Insights
CDK4 is crucial for fusion-positive rhabdomyosarcoma (RMS) cell growth. CDK4/6 inhibition with LEE011 effectively halts RMS proliferation, with low CDK4-expressing tumors showing heightened susceptibility.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Rhabdomyosarcoma (RMS) is a common pediatric soft tissue sarcoma.
- A subset of fusion-positive RMS exhibits amplification of the 12q13-14 chromosomal region, including the CDK4 proto-oncogene.
- CDK4/6 inhibitors show efficacy in other cancers, suggesting potential for fusion-positive RMS.
Purpose of the Study:
- To investigate the role of CDK4 in fusion-positive RMS.
- To evaluate the therapeutic potential of CDK4/6 inhibition in fusion-positive RMS models.
Main Methods:
- Examined biologic effects of CDK4 knockdown and overexpression in RMS cell lines.
- Assessed pharmacologic CDK4/6 inhibition using LEE011 in RMS cell lines and xenografts.
- Analyzed cell-cycle progression, proliferation, and RB-E2F pathway activity.
Main Results:
- CDK4 knockdown induced G1-phase cell-cycle arrest and abrogated proliferation in fusion-positive RMS cells.
- LEE011 treatment mimicked CDK4 knockdown, reducing viability and inducing cell-cycle arrest.
- Sensitivity to LEE011 varied, with diminished response in CDK4-amplified or overexpressing cells.
- CDK4 amplification and overexpression reduced sensitivity to LEE011 in cell lines and xenografts.
Conclusions:
- CDK4 is essential for RB-E2F-mediated cell-cycle progression and proliferation in fusion-positive RMS.
- CDK4 overexpression alone is insufficient to drive proliferation.
- LEE011 demonstrates activity against fusion-positive RMS.
- Tumors with low CDK4 expression may be more sensitive to CDK4/6 inhibition.
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