| Literature DB >> 34342224 |
David C McKinney1, Brian J McMillan1, Matthew J Ranaghan1, Jamie A Moroco1, Merissa Brousseau1, Zachary Mullin-Bernstein2, Meghan O'Keefe1, Patrick McCarren1, Michael F Mesleh1, Kathleen M Mulvaney2, Foxy Robinson2, Ritu Singh1, Besnik Bajrami1, Florence F Wagner1, Robert Hilgraf1, Martin J Drysdale1, Arthur J Campbell1, Adam Skepner1, David E Timm3, Dale Porter2, Virendar K Kaushik1, William R Sellers2,4, Alessandra Ianari2.
Abstract
PRMT5 and its substrate adaptor proteins (SAPs), pICln and Riok1, are synthetic lethal dependencies in MTAP-deleted cancer cells. SAPs share a conserved PRMT5 binding motif (PBM) which mediates binding to a surface of PRMT5 distal to the catalytic site. This interaction is required for methylation of several PRMT5 substrates, including histone and spliceosome complexes. We screened for small molecule inhibitors of the PRMT5-PBM interaction and validated a compound series which binds to the PRMT5-PBM interface and directly inhibits binding of SAPs. Mode of action studies revealed the formation of a covalent bond between a halogenated pyridazinone group and cysteine 278 of PRMT5. Optimization of the starting hit produced a lead compound, BRD0639, which engages the target in cells, disrupts PRMT5-RIOK1 complexes, and reduces substrate methylation. BRD0639 is a first-in-class PBM-competitive inhibitor that can support studies of PBM-dependent PRMT5 activities and the development of novel PRMT5 inhibitors that selectively target these functions.Entities:
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Year: 2021 PMID: 34342224 PMCID: PMC9036822 DOI: 10.1021/acs.jmedchem.1c00507
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 8.039