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MYC synergizes with activated BRAFV600E in mouse lung tumor development by suppressing senescence
Vedrana Tabor1, Matteo Bocci2, Nyosha Alikhani3
1Department of Microbiology, Tumor and Cell Biology (MTC), Karolinska Institutet, Stockholm, Sweden. Department of Medical Biochemistry and Biophysics (MBB), Karolinska Institute, Stockholm, Sweden.
Abstract:
The activated RAS/RAF cascade plays a crucial role in lung cancer, but is also known to induce cellular senescence, a major barrier imposed on tumor cells early in tumorigenesis. MYC is a key factor in suppression of RAS/BRAF(V600E)-induced senescence in vitro. However, it is still unclear whether MYC has the same role during tumor development in vivo. Using a conditional, compound knock-in model of Cre-activated BRAF(V600E) and tamoxifen-regulatable MycER, we show that tamoxifen-induced activation of MYC accelerated the onset and increased the number and size of BRAF(V600E)-driven adenomas in a dose-dependent manner, resulting in reduced survival. Furthermore, MYC activation leads to reduced expression of the senescence markers p16(INK4A), p21(CIP1), and H3K9me3-containing heterochromatin foci, and an increased percentage of Ki67(+) tumor cells. This suggests that MYC already early during tumor formation suppresses a BRAF(V600E)-induced senescence-like state. Initial activation of MYC followed by tamoxifen withdrawal still resulted in an increased number of tumors and reduced survival. However, these tumors were of smaller size, showed increased expression of p16(INK4A) and p21(CIP1), and reduced number of Ki67(+) cells, indicating that MYC inactivation restores BRAF(V600E)-induced senescence. Surprisingly, MYC activation did not promote adenoma to carcinoma progression. This suggests that senescence suppression by MYC is a discrete step in tumor development important for sustained tumor growth but preceding malignant transformation and that additional oncogenic events are required for carcinoma development and metastasis. These findings contribute to our understanding of the neoplastic transformation process, with implications for future treatment strategies.
Insights
MYC accelerates lung tumor growth by suppressing senescence, but does not drive malignant progression. Inactivating MYC restores senescence, reducing tumor size and improving survival, highlighting MYC
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- The RAS/RAF pathway is vital in lung cancer but can trigger cellular senescence, a tumor growth barrier.
- MYC is known to suppress RAS/BRAF(V600E)-induced senescence in vitro, but its role in vivo is unclear.
Purpose of the Study:
- To investigate the role of MYC in suppressing BRAF(V600E)-induced senescence during lung tumor development in vivo.
- To determine if MYC influences adenoma progression to carcinoma.
Main Methods:
- Utilized a conditional, compound knock-in mouse model with Cre-activated BRAF(V600E) and tamoxifen-regulatable MycER.
- Administered tamoxifen to induce MYC activation and withdrawal to inactivate MYC.
- Assessed tumor onset, size, number, survival, senescence markers (p16INK4A, p21CIP1), heterochromatin, and proliferation (Ki67).
Main Results:
- MYC activation accelerated tumor onset, increased adenoma number and size, and reduced survival in a dose-dependent manner.
- MYC suppressed senescence markers (p16INK4A, p21CIP1) and heterochromatin, increasing proliferation (Ki67).
- MYC inactivation restored senescence markers and reduced proliferation, decreasing tumor size but not improving survival after initial MYC activation.
Conclusions:
- MYC actively suppresses BRAF(V600E)-induced senescence early in lung tumorigenesis, promoting tumor growth.
- Senescence suppression by MYC is a distinct step preceding malignant transformation, requiring additional events for carcinoma development.
- MYC's role in senescence suppression offers potential therapeutic targets for lung cancer treatment strategies.
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