Promiscuous RNA binding by WDR5 remodels the KMT2A (MLL1) histone methyltransferase complex to an inactive state
Kainth, A. S.; Sirjoosingh, P.; Werner, M.; Gupta, A.; Koide, A.; Koide, S.; Ruthenburg, A. J.
Show abstract
Chromatin-modifying complexes are critical in gene regulation, yet their proposed interactions with RNA remain poorly understood. Here, we show that WDR5, an essential subunit of the MLL1 (KMT2A) histone methyltransferase complex, binds RNA with high affinity but without sequence specificity. Using a stringent approach, we demonstrate that WDR5 directly engages a diverse pool of RNAs in cells, predominantly as a function of RNA abundance rather than specific motifs. Equilibrium binding assays further show that RNA length, rather than sequence, dictates WDR5 affinity. We map multiple RNA-binding regions on WDR5, some of which overlap with surfaces used in MLL1 complex subunit interfaces. Strikingly, we find that RNA binding disrupts the MLL1 complex by competitively displacing WDR5 from these critical protein-protein interactions, leading to a marked inhibition of MLL1 catalytic activity. This regulatory mechanism provides a layer of control over histone methylation, potentially integrating transcriptional activity with chromatin state.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- UPF1 mutants with intact ATPase but deficient helicase activities promote efficient nonsense-mediated mRNA decay 97%
- Single-molecule imaging reveals a direct role of CTCF's zinc fingers in SA interaction and cluster-dependent RNA recruitment 96%
- Target DNA-dependent activation mechanism of the prokaryotic immune system SPARTA 96%
Similar papers in this journal
- Identification of Two Elusive Human Ribonuclease MRP-Specific Protein Components 96%
- Multi-omics and biochemical reconstitution reveal CDK7-dependent mechanisms controlling RNA polymerase II function at gene 5'- and 3'-ends 95%
- Paraspeckle Protein NONO Regulates Active Chromatin by Allosterically Stimulating NSD1 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.