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Methylation of the chromatin modifier KMT2D by SMYD2 contributes to therapeutic response in hormone-dependent breast cancer

Cell Reports. 2025-01; 
Ryan Blawski; Bujamin H. Vokshi; Xinyu Guo; Srushti Kittane; Mirna Sallaku; Wanlu Chen; Martina Gjyzari; Tony Cheung; Yuhan Zhang; Christopher Simpkins; Weiqiang Zhou; Amanda Kulick; Peihua Zhao; Meihan Wei; Pranavkrishna Shivashankar; Tatiana Prioleau; Pedram Razavi; Richard Koche; Vito W. Rebecca; Elisa de Stanchina; Pau Castel; Ho Man Chan; Maurizio Scaltriti; Emiliano Cocco; Hongkai Ji; Minkui Luo; Eneda Toska
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Peptide Synthesis purified from E.coli with the exception of the EZH1 (BPS BioScience 51006) and EZH2 (BPS BioScience 51003) complexes. KMT2D peptides were synthesized by GenScript and were used at a final concentration of 5mM. Reactions were run overnight at room temperature. Samples were then spotted on Whatman P81 phosphocellulose Get A Quote

摘要

SUMMARYActivating mutations in PIK3CA are frequently found in estrogen-receptor-positive (ER+) breast cancer, and the combination of the phosphatidylinositol 3-kinase (PI3K) inhibitor alpelisib with anti-ER inhibitors is approved for therapy. We have previously demonstrated that the PI3K pathway regulates ER activity through phosphorylation of the chromatin modifier KMT2D. Here, we discovered a methylation site on KMT2D, at K1330 directly adjacent to S1331, catalyzed by the lysine methyltransferase SMYD2. SMYD2 loss attenuates alpelisib-induced KMT2D chromatin binding and alpelisib-mediated changes in gene expression, including ER-dependent transcription. Knockdown or pharmacological inhibition of SMYD2 sensiti... More

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