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Proteomic Analyses Identify a Novel Role for EZH2 in the Initiation of Cancer Cell Drug Tolerance
Abstract:
Acquisition of drug resistance remains a chief impediment to successful cancer therapy, and we previously described a transient drug-tolerant cancer cell population (DTPs) whose survival is in part dependent on the activities of the histone methyltransferases G9a/EHMT2 and EZH2, the latter being the catalytic component of the polycomb repressive complex 2 (PRC2). Here, we apply multiple proteomic techniques to better understand the role of these histone methyltransferases (HMTs) in the establishment of the DTP state. Proteome-wide comparisons of lysine methylation patterns reveal that DTPs display an increase in methylation on K116 of PRC member Jarid2, an event that helps stabilize and recruit PRC2 to chromatin. We also find that EZH2, in addition to methylating histone H3K27, also can methylate G9a at K185, and that methylated G9a better recruits repressive complexes to chromatin. These complexes are similar to complexes recruited by histone H3 methylated at K9. Finally, a detailed histone post-translational modification (PTM) analysis shows that EZH2, either directly or through its ability to methylate G9a, alters H3K9 methylation in the context of H3 serine 10 phosphorylation, primarily in a cancer cell subpopulation that serves as DTP precursors. We also show that combinations of histone PTMs recruit a different set of complexes to chromatin, shedding light on the temporal mechanisms that contribute to drug tolerance.
Insights
Histone methyltransferases G9a and EZH2 are key to drug tolerance in cancer. EZH2 modifies G9a and PRC2, altering chromatin to promote cancer cell survival and resistance.
Area of Science:
- Epigenetics
- Cancer Biology
- Proteomics
Background:
- Drug resistance is a major challenge in cancer therapy.
- A transient drug-tolerant cell population (DTPs) contributes to resistance.
- Histone methyltransferases G9a/EHMT2 and EZH2 are implicated in DTP survival.
Purpose of the Study:
- To investigate the role of G9a/EHMT2 and EZH2 in establishing the drug-tolerant state.
- To elucidate the proteomic mechanisms underlying drug tolerance.
Main Methods:
- Proteome-wide lysine methylation analysis
- Histone post-translational modification (PTM) analysis
- Chromatin immunoprecipitation (ChIP) assays
Main Results:
- DTPs show increased methylation of Jarid2 at K116, enhancing PRC2 recruitment.
- EZH2 methylates G9a at K185, promoting recruitment of repressive complexes.
- EZH2 and G9a alter H3K9 methylation in conjunction with H3 serine 10 phosphorylation in DTP precursors.
Conclusions:
- G9a and EZH2 play critical roles in epigenetic reprogramming during drug tolerance.
- Specific histone methylation patterns and PTM combinations dictate the recruitment of regulatory complexes.
- Understanding these mechanisms offers potential therapeutic targets for overcoming cancer drug resistance.
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