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Ink4a/Arf loss promotes tumor recurrence following Ras inhibition
Matthew W Vanbrocklin1, James P Robinson, Kristin J Lastwika
1Nevada Cancer Institute, Las Vegas, Nevada 89135, USA.
Abstract:
Aberrant activation of rat sarcoma (Ras) signaling contributes to the development of a variety of human cancers, including gliomas. To determine the dependence of high-grade gliomas on continued Ras signaling, we developed a doxycycline-regulated Kirsten Ras (KRas) glioma mouse model. We previously demonstrated that KRas is required for the maintenance of glioblastoma multiforme tumors arising in the context of activated Akt signaling in vivo; inhibition of KRas expression resulted in apoptotic tumor regression and significantly increased survival. We utilized a well-established glioma mouse model to determine the reliance of gliomas on continued KRas signaling in the context of Ink4a/Arf deficiency, a common occurrence in human gliomas. Despite the dependency of primary gliomas on continued KRas signaling, a significant percentage of tumors progressed to a KRas-independent state in the absence of Ink4a/Arf expression, demonstrating that these tumor suppressors play a critical role in the suppression of glioma recurrence. While even advanced stages of gliomas may remain dependent upon KRas signaling for maintenance and growth, our findings demonstrate that loss of Ink4a/Arf facilitates the acquisition of oncogene independence and tumor recurrence. Furthermore, reactivation of the Ras mitogen-activated protein kinase pathway in the absence of virally delivered KRas expression is a common mechanism of recurrence in this context.
Insights
Aberrant Ras signaling drives glioma development. Loss of Ink4a/Arf allows gliomas to become KRas-independent, leading to recurrence, often via Ras-MAPK pathway reactivation.
Area of Science:
- Oncology
- Cancer Biology
- Molecular Oncology
Background:
- Aberrant Ras signaling is implicated in various human cancers, including gliomas.
- High-grade gliomas often exhibit alterations in tumor suppressors like Ink4a/Arf.
- Ras signaling is crucial for the development and maintenance of certain cancers.
Purpose of the Study:
- To investigate the dependence of high-grade gliomas on sustained Ras signaling.
- To determine the role of Ink4a/Arf deficiency in glioma progression and recurrence.
- To explore mechanisms of oncogene independence in gliomas.
Main Methods:
- Development of a doxycycline-regulated Kirsten Ras (KRas) glioma mouse model.
- Utilizing a well-established glioma mouse model with Ink4a/Arf deficiency.
- Inhibition of KRas expression and monitoring tumor regression and survival.
Main Results:
- KRas signaling is required for the maintenance of established glioblastoma multiforme tumors.
- Inhibiting KRas expression led to tumor regression and increased survival.
- Gliomas lacking Ink4a/Arf could progress to a KRas-independent state, facilitating recurrence.
Conclusions:
- Ink4a/Arf plays a critical role in suppressing glioma recurrence by maintaining KRas dependency.
- Loss of Ink4a/Arf facilitates the acquisition of oncogene independence and tumor recurrence.
- Reactivation of the Ras-MAPK pathway is a common mechanism for glioma recurrence in the absence of Ink4a/Arf.
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