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Updated: Apr 17, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Atg7 Overcomes Senescence and Promotes Growth of BrafV600E-Driven Melanoma
Xiaoqi Xie1, Ju Yong Koh1, Sandy Price1
1Rutgers Cancer Institute of New Jersey, New Brunswick, New Jersey. Department of Medicine, Rutgers Robert Wood Johnson Medical School, Piscataway, New Jersey.
Unlabelled:
Macroautophagy (autophagy hereafter) may promote survival and growth of spontaneous tumors, including melanoma. We utilized a genetically engineered mouse model of melanoma driven by oncogenic BrafV600E and deficiency in the Pten tumor suppressor gene in melanocytes to test the functional consequences of loss of the essential autophagy gene autophagy-related-7, Atg7. Atg7 deficiency prevented melanoma development by BrafV600E and allelic Pten loss, indicating that autophagy is essential for melanomagenesis. Moreover, BrafV600E-mutant, Pten-null, Atg7-deficient melanomas displayed accumulation of autophagy substrates and growth defects, which extended animal survival. Atg7-deleted tumors showed increased oxidative stress and senescence, a known barrier to melanomagenesis. Treatment with the BRAF inhibitor dabrafenib decreased tumor growth and induced senescence that was more pronounced in tumors with Atg7 deficiency. Thus, Atg7 promotes melanoma by limiting oxidative stress and overcoming senescence, and autophagy inhibition may be of therapeutic value by augmenting the antitumor activity of BRAF inhibitors.
Significance:
The essential autophagy gene Atg7 promotes development of BrafV600E-mutant, Pten-null melanomas by overcoming senescence, and deleting Atg7 facilitated senescence induction and antitumor activity of BRAF inhibition. This suggests that combinatorial BRAFV600E and autophagy inhibition may improve therapeutic outcomes in patients whose tumors have BRAFV600E/K mutations, an approach currently being explored in clinical trials.
Insights
Autophagy, regulated by the gene Atg7, is essential for melanoma development. Inhibiting Atg7 in mice with specific mutations promotes senescence and enhances BRAF inhibitor effectiveness, suggesting new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Cellular Biology
Background:
- Macroautophagy (autophagy) can promote tumor growth, including melanoma.
- The BrafV600E oncogene and Pten loss are key drivers of melanoma.
- Autophagy-related-7 (Atg7) is an essential gene for autophagy.
Purpose of the Study:
- To investigate the role of Atg7 in melanoma development driven by BrafV600E and Pten loss.
- To determine the functional consequences of Atg7 deficiency in melanoma.
- To explore the therapeutic potential of autophagy inhibition in melanoma treatment.
Main Methods:
- Utilized a genetically engineered mouse model of melanoma with oncogenic BrafV600E and Pten deficiency.
- Assessed the impact of Atg7 deficiency on melanoma development and tumor characteristics.
- Administered BRAF inhibitor dabrafenib to evaluate its efficacy in combination with Atg7 deficiency.
Main Results:
- Atg7 deficiency completely prevented melanoma development in the BrafV600E/Pten-null model.
- Atg7-deficient melanomas showed impaired growth, accumulation of autophagy substrates, increased oxidative stress, and senescence.
- BRAF inhibitor treatment induced more pronounced senescence in Atg7-deficient tumors, enhancing antitumor activity.
Conclusions:
- Atg7 is crucial for melanoma development by suppressing oxidative stress and senescence.
- Inhibition of Atg7 enhances the antitumor effects of BRAF inhibitors.
- Combining BRAFV600E inhibition with autophagy inhibition may offer improved therapeutic outcomes for melanoma patients with BRAFV600E/K mutations.
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