| Literature DB >> 34046601 |
Kun Qian1, Chunli Yan2, Hairui Su3, Tran Dang1, Bo Zhou1, Zhenyu Wang2, Xinyang Zhao3, Ivaylo Ivanov2, Meng-Chiao Ho4, Y George Zheng1.
Abstract
Protein arginine methyltransferases (PRMTs) are essential epigenetic and post-translational regulators in eukaryotic organisms. Dysregulation of PRMTs is intimately related to multiple types of human diseases, particularly cancer. Based on the previously reported PRMT1 inhibitors bearing the diamidine pharmacophore, we performed virtual screening to identify additional amidine-associated structural analogs. Subsequent enzymatic tests and characterization led to the discovery of a top lead K313 (2-(4-((4-carbamimidoylphenyl)amino)phenyl)-1H-indole-6-carboximidamide), which possessed low-micromolar potency with biochemical IC50 of 2.6 μM for human PRMT1. Limited selectivity was observed over some other PRMT isoforms such as CARM1 and PRMT7. Molecular modeling and inhibition pattern studies suggest that K313 is a nonclassic noncompetitive inhibitor to PRMT1. K313 significantly inhibited cell proliferation and reduced the arginine asymmetric dimethylation level in the leukaemia cancer cells. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 34046601 PMCID: PMC8130551 DOI: 10.1039/d0md00259c
Source DB: PubMed Journal: RSC Med Chem ISSN: 2632-8682