| Literature DB >> 32367723 |
Yudao Shen1, Fengling Li2, Magdalena M Szewczyk2, Levon Halabelian2, Kwang-Su Park1, Irene Chau2, Aiping Dong2, Hong Zeng2, He Chen1, Fanye Meng1, Dalia Barsyte-Lovejoy2, Cheryl H Arrowsmith2,3, Peter J Brown2, Jing Liu1, Masoud Vedadi2,4, Jian Jin1.
Abstract
Protein arginine methyltransferase 6 (<span class="Gene">PRMT6) plays important roles in several biological processes associated with multiple cancers. Well-characterized potent, selective, and cell-active PRMT6 inhibitors are invaluable tools for testing biological and therapeutic hypotheses. Although there are several known reversible PRMT6 inhibitors, covalent PRMT6 inhibitors have not been reported. Based on a cocrystal structure of PRMT6-MS023 (a type I PRMT inhibitor), we discovered the first potent and cell-active irreversible PRMT6 inhibitor, 4 (MS117). The covalent binding mode of compound 4 to PRMT6 was confirmed by mass spectrometry and kinetic studies and by a cocrystal structure. Compound 4 did not covalently modify other closely related PRMTs, potently inhibited PRMT6 in cells, and was selective for PRMT6 over other methyltransferases. We also developed two structurally similar control compounds, 5 (MS167) and 7 (MS168). We provide these valuable chemical tools to the scientific community for further studying PRMT6 physiological and pathophysiological functions.Entities:
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Year: 2020 PMID: 32367723 PMCID: PMC7286362 DOI: 10.1021/acs.jmedchem.0c00406
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446