Dynamics of BAF–Polycomb complex opposition on heterochromatin in normal and oncogenic states

Gerald Crabtree, Cigall Kadoch and colleagues report that BAF complexes oppose PRC by rapid, ATP-dependent eviction in the absence of Pol II occupancy, transcription or replication, leading to the formation of accessible chromatin. They also find that tumor-suppressor and oncogenic mutations in BAF...

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Veröffentlicht in:Nature genetics 2017-02, Vol.49 (2), p.213-222
Hauptverfasser: Kadoch, Cigall, Williams, Robert T, Calarco, Joseph P, Miller, Erik L, Weber, Christopher M, Braun, Simon M G, Pulice, John L, Chory, Emma J, Crabtree, Gerald R
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Sprache:eng
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Zusammenfassung:Gerald Crabtree, Cigall Kadoch and colleagues report that BAF complexes oppose PRC by rapid, ATP-dependent eviction in the absence of Pol II occupancy, transcription or replication, leading to the formation of accessible chromatin. They also find that tumor-suppressor and oncogenic mutations in BAF subunits result in differential effects on PRC eviction. The opposition between Polycomb repressive complexes (PRCs) and BAF (mSWI/SNF) complexes has a critical role in both development and disease. Mutations in the genes encoding BAF subunits contribute to more than 20% of human malignancies, yet the underlying mechanisms remain unclear, owing largely to a lack of assays to assess BAF function in living cells. To address this, we have developed a widely applicable recruitment assay system through which we find that BAF opposes PRC by rapid, ATP-dependent eviction, leading to the formation of accessible chromatin. The reversal of this process results in reassembly of facultative heterochromatin. Surprisingly, BAF-mediated PRC eviction occurs in the absence of RNA polymerase II (Pol II) occupancy, transcription, and replication. Further, we find that tumor-suppressor and oncogenic mutant BAF complexes have different effects on PRC eviction. The results of these studies define a mechanistic sequence underlying the resolution and formation of facultative heterochromatin, and they demonstrate that BAF opposes PRC on a minute-by-minute basis to provide epigenetic plasticity.
ISSN:1061-4036
1546-1718
DOI:10.1038/ng.3734