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Epigenetic disruption of the RARγ complex impairs its function to bookmark AR enhancer interactions required for enzalutamide sensitivity in prostate cancer

Wani, S. A.; Hussain, S.; Gray, J. S.; Nayak, D.; Tang, H.; Perez, L. M.; Long, M. D.; Siddappa, M.; McCabe, C.; Campbell, L.; Freeman, M. R.; Campbell, M. J.

2023-12-16 cancer biology
10.1101/2023.12.15.571947 bioRxiv
Show abstract

The current study in prostate cancer (PCa) focused on the genomic mechanisms at the cross-roads of pro-differentiation signals and the emergence of lineage plasticity. We explored an understudied cistromic mechanism involving RAR{gamma}s ability to govern AR cistrome-transcriptome relationships, including those associated with more aggressive PCa features. The RAR{gamma} complex in PCa cell models was enriched for canonical cofactors, as well as proteins involved in RNA processing and bookmarking. Identifying the repertoire of miR-96 bound and regulated gene targets, including those recognition elements marked by m6A, revealed their significant enrichment in the RAR{gamma} complex. RAR{gamma} significantly enhanced the AR cistrome, particularly in active enhancers and super-enhancers, and overlapped with the binding of bookmarking factors. Furthermore, RAR{gamma} expression led to nucleosome-free chromatin enriched with H3K27ac, and significantly enhanced the AR cistrome in G2/M cells. RAR{gamma} functions also antagonized the transcriptional actions of the lineage master regulator ONECUT2. Similarly, gene programs regulated by either miR-96 or antagonized by RAR{gamma} were enriched in alternative lineages and more aggressive PCa phenotypes. Together these findings reveal an under-investigated role for RAR{gamma}, modulated by miR-96, to bookmark enhancer sites during mitosis. These sites are required by the AR to promote transcriptional competence, and emphasize luminal differentiation, while antagonizing ONECUT2.

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