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Published on: May 27, 2021
C/EBPβ deletion in oncogenic Ras skin tumors is a synthetic lethal event
Zachary J Messenger1, Jonathan R Hall2,3,4, Dereje D Jima5,6
1Toxicology Program, Raleigh, NC, USA.
Abstract:
Therapeutic targeting of specific genetic changes in cancer has proven to be an effective therapy and the concept of synthetic lethality has emerged. CCAAT/enhancer-binding protein-β (C/EBPβ), a basic leucine zipper transcription factor, has important roles in cellular processes including differentiation, inflammation, survival, and energy metabolism. Using a genetically engineered mouse model, we report that the deletion C/EBPβ in pre-existing oncogenic Ha-Ras mouse skin tumors in vivo resulted in rapid tumor regression. Regressing tumors exhibited elevated levels of apoptosis and p53 protein/activity, while adjacent C/EBPβ-deleted skin did not. These results indicate that the deletion of C/EBPβ de-represses p53 in oncogenic Ras tumors but not in normal wild-type Ras keratinocytes, and that C/EBPβ is essential for survival of oncogenic Ras tumors. Co-deletion of C/EBPβ and p53 in oncogenic Ras tumors showed p53 is required for tumor regression and elevated apoptosis. In tumors, loss of a pathway that confers adaptability to a stress phenotype of cancer/tumorigenesis, such as DNA damage, could result in selective tumor cell killing. Our results show that oncogenic Ras tumors display a significant DNA damage/replicative stress phenotype and these tumors have acquired a dependence on C/EBPβ for their survival. RNAseq data analysis of regressing tumors deleted of C/EBPβ indicates a novel interface between p53, type-1 interferon response, and death receptor pathways, which function in concert to produce activation of extrinsic apoptosis pathways. In summary, the deletion of C/EBPβ in oncogenic Ras skin tumors is a synthetic lethal event, making it a promising target for future potential anticancer therapies.
Insights
Deleting CCAAT/enhancer-binding protein-β (C/EBPβ) triggers synthetic lethality in Ras-driven skin tumors. This targeted deletion causes tumor regression by reactivating p53 and inducing apoptosis, offering a novel cancer therapy strategy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Targeting specific genetic alterations in cancer is a key therapeutic strategy.
- Synthetic lethality is an emerging concept in cancer treatment.
- CCAAT/enhancer-binding protein-β (C/EBPβ) is a transcription factor involved in crucial cellular processes.
Purpose of the Study:
- To investigate the role of C/EBPβ in the survival of oncogenic Ras-driven skin tumors.
- To determine if C/EBPβ deletion can induce tumor regression via synthetic lethality.
- To elucidate the molecular mechanisms underlying C/EBPβ-mediated tumor regression.
Main Methods:
- Utilized a genetically engineered mouse model with oncogenic Ha-Ras.
- Performed in vivo deletion of C/EBPβ in pre-existing skin tumors.
- Analyzed tumor regression, apoptosis, p53 activity, and DNA damage.
- Conducted RNA sequencing (RNAseq) on regressing tumors.
Main Results:
- Deletion of C/EBPβ in oncogenic Ras tumors led to rapid tumor regression.
- Regressing tumors showed increased apoptosis and p53 activity, unlike normal skin.
- Oncogenic Ras tumors exhibit DNA damage and depend on C/EBPβ for survival.
- RNAseq revealed a link between p53, type-1 interferon response, and death receptor pathways activating apoptosis.
Conclusions:
- C/EBPβ is essential for the survival of oncogenic Ras skin tumors.
- C/EBPβ deletion acts as a synthetic lethal event, causing tumor regression.
- The findings suggest C/EBPβ is a promising therapeutic target for Ras-driven skin cancers.
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