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Updated: Jun 11, 2025

Focus Formation: A Cell-based Assay to Determine the Oncogenic Potential of a Gene
Published on: December 31, 2014
MAX inactivation deregulates the MYC network and induces neuroendocrine neoplasia in multiple tissues
Brian Freie1, Ali H Ibrahim2,3, Patrick A Carroll1
1Basic Sciences Division, Fred Hutchinson Cancer Center, Seattle WA USA.
Abstract:
The MYC transcription factor requires MAX for DNA binding and widespread activation of gene expression in both normal and neoplastic cells. Surprisingly, inactivating mutations in MAX are associated with a subset of neuroendocrine cancers including pheochromocytoma, pituitary adenoma and small cell lung cancer. Neither the extent nor the mechanisms of MAX tumor suppression are well understood. Delet-ing Max across multiple mouse neuroendocrine tissues, we find Max inactivation alone produces pituitary adenomas while Max loss cooperates with Rb1/Trp53 loss to accelerate medullary thyroid C-cell and pituitary adenoma development. In the thyroid tumor cell lines, MAX loss triggers a striking shift in genomic occupancy by other members of the MYC network (MNT, MLX, MondoA) supporting metabolism, survival and proliferation of neoplastic neuroendocrine cells. Our work reveals MAX as a broad suppressor of neuroendocrine tumorigenesis through its ability to maintain a balance of genomic occupancies among the diverse transcription factors in the MYC network.
Insights
Loss of the MAX transcription factor promotes neuroendocrine tumors, including pituitary adenomas and thyroid cancers. MAX maintains balance within the MYC network, suppressing tumor development.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- The MYC transcription factor, essential for gene expression, requires MAX for DNA binding.
- Mutations in MAX are linked to neuroendocrine cancers, but its tumor suppressor role is unclear.
Purpose of the Study:
- To investigate the role of MAX in neuroendocrine tumor suppression.
- To elucidate the mechanisms by which MAX loss contributes to tumorigenesis.
Main Methods:
- Deletion of the Max gene in mouse neuroendocrine tissues.
- Analysis of tumor development and genomic occupancy of MYC network factors.
Main Results:
- Max inactivation alone caused pituitary adenomas.
- Max loss accelerated tumor development when combined with Rb1/Trp53 loss.
- MAX loss shifted genomic occupancy of MYC network members (MNT, MLX, MondoA) in thyroid tumor cells.
Conclusions:
- MAX acts as a broad suppressor of neuroendocrine tumorigenesis.
- MAX maintains tumor suppression by balancing genomic occupancy within the MYC transcription factor network.
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