Mutant RIT1 cooperates with YAP to drive an EMT-like lung cancer state
Mary C Rominger1, Saksham Gupta1, Sitapriya Moorthi1
1Human Biology Division, Fred Hutchinson Cancer Center, Seattle, WA 98109.
Researchers developed a new mouse model for RIT1-mutant lung cancer. This model revealed that RIT1 cooperates with Nf2 loss to drive aggressive cancer, offering new therapeutic targets like TEAD.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Oncogene addiction has yielded targeted therapies for lung adenocarcinoma, but RIT1 mutations remain untargeted.
- RIT1 mutations are driver events in ~2% of lung adenocarcinomas, occurring separately from KRAS and EGFR mutations.
- Lack of preclinical models impedes therapeutic development for RIT1-mutant lung cancer.
Purpose of the Study:
- To establish a novel mouse model for RIT1-driven lung cancer.
- To investigate the oncogenic cooperation between RIT1 and other genetic alterations.
- To identify potential therapeutic targets for RIT1-mutant lung cancer.
Main Methods:
- Generated a Cre-regulated mouse model for inducible expression of the human RIT1 M90I variant.
- Assessed cancer development with RIT1 M90I expression alone, with p53 loss, and with Nf2 inactivation.
- Analyzed downstream signaling pathways, including cJUN and YAP/TEAD.
- Evaluated therapeutic efficacy of MEK and YAP/TEAD inhibitors in vivo.
Main Results:
- RIT1 M90I alone or with p53 loss showed weak oncogenic potential.
- Synergy between RIT1 M90I and Nf2 inactivation drove aggressive, highly penetrant lung cancer with rapid onset.
- Oncogenic cooperation was mediated by synergistic activation of cJUN.
- Inhibition of MEK and YAP/TEAD pathways suppressed RIT1-driven lung cancer growth.
Conclusions:
- RIT1 M90I collaborates with Nf2 inactivation to drive aggressive lung cancer via cJUN activation.
- YAP/TEAD signaling is a key mediator of RIT1's oncogenic activity.
- TEAD represents a promising therapeutic target for RIT1-mutant lung cancer.
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