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Evaluation of Substrate Ubiquitylation by E3 Ubiquitin-ligase in Mammalian Cell Lysates
Published on: May 10, 2022
MYC is a critical target of FBXW7
Mai Sato1,2, Ruth Rodriguez-Barrueco2,3, Jiyang Yu4
1Department of Pathology and Cell Biology, Columbia University, New York, USA.
Abstract:
MYC deregulation is a driver of many human cancers. Altering the balance of MYC protein levels at the level of transcription, protein stability, or turnover is sufficient to transform cells to a tumorigenic phenotype. While direct targeting of MYC is difficult, specific genetic vulnerabilities of MYC-deregulated cells could be exploited to selectively inhibit their growth. Using a genome-wide shRNA screen, we identified 78 candidate genes, which are required for survival of human mammary epithelial cells with elevated MYC levels. Among the candidates, we validated and characterized FBXW7, a component of the SCF-like ubiquitin ligase complex that targets MYC for proteasomal degradation. Down-regulation of FBXW7 leads to synergistic accumulation of cellular and active chromatin-bound MYC, while protein levels of other FBXW7 targets appear unaffected. Over a four-week time course, continuous FBXW7 down-regulation and MYC activation together cause an accumulation of cells in S-phase and G2/M-phase of the cell cycle. Under these conditions, we also observe elevated chromatin-bound levels of CDC45, suggesting increased DNA replication stress. Consistent with these results, FBXW7 down-regulation alone decreases the survival of T47D breast cancer cells. These results establish that FBXW7 down-regulation is synthetic lethal with MYC, and that MYC is a critical target of FBXW7 in breast epithelial cells.
Insights
MYC deregulation drives cancer. Researchers found that down-regulating FBXW7 synergistically increases MYC, leading to synthetic lethality and decreased breast cancer cell survival.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- MYC deregulation is a key driver in numerous human cancers.
- Targeting MYC directly is challenging, necessitating exploration of genetic vulnerabilities in MYC-driven cancers.
Purpose of the Study:
- To identify genes essential for the survival of human mammary epithelial cells with elevated MYC levels.
- To investigate the role of FBXW7 in regulating MYC stability and its potential as a therapeutic target.
Main Methods:
- A genome-wide shRNA screen was employed to identify essential genes in MYC-overexpressing cells.
- FBXW7 was validated as a key gene, and its effect on MYC levels and cell cycle progression was analyzed.
- The impact of FBXW7 down-regulation on breast cancer cell survival was assessed.
Main Results:
- A screen identified 78 candidate genes required for survival in MYC-deregulated cells.
- FBXW7, a ubiquitin ligase component, was validated; its down-regulation caused synergistic accumulation of active MYC.
- FBXW7 down-regulation led to cell cycle arrest, increased DNA replication stress, and decreased survival in T47D breast cancer cells.
Conclusions:
- FBXW7 down-regulation exhibits synthetic lethality with MYC.
- MYC is a critical target of FBXW7 in breast epithelial cells, highlighting a potential therapeutic strategy.
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