A Potent, Selective and Cell-Active Allosteric Inhibitor of Protein Arginine Methyltransferase 3 (PRMT3)

Authors
Kaniskan, H. UemitSzewczyk, Magdalena M.Yu, ZhengtianEram, Mohammad S.Yang, XiaobaoSchmidt, KeithLuo, XiaoDai, MiaoHe, FengZang, IreneLin, YingKennedy, StevenLi, FenglingDobrovetsky, ElenaDong, AipingSmil, DavidMin, Sun-JoonLandon, MelissaLin-Jones, JenniferHuang, Xi-PingRoth, Bryan L.Schapira, MatthieuAtadja, PeterBarsyte-Lovejoy, DaliaArrowsmith, Cheryl H.Brown, Peter J.Zhao, KehaoJin, JianVedadi, Masoud
Issue Date
2015-04
Publisher
John Wiley & Sons Ltd.
Citation
Angewandte Chemie International Edition, v.54, no.17, pp.5166 - 5170
Abstract
PRMT3 catalyzes the asymmetric dimethylation of arginine residues of various proteins. It is essential for maturation of ribosomes, may have a role in lipogenesis, and is implicated in several diseases. A potent, selective, and cellactive PRMT3 inhibitor would be a valuable tool for further investigating PRMT3 biology. Here we report the discovery of the first PRMT3 chemical probe, SGC707, by structure-based optimization of the allosteric PRMT3 inhibitors we reported previously, and thorough characterization of this probe in biochemical, biophysical, and cellular assays. SGC707 is a potent PRMT3 inhibitor (IC5 = 31 perpendicular to 2 nm, K-D = 53 perpendicular to 2 nm) with outstanding selectivity (selective against 31 other methyl-transferases and more than 250 non-epigenetic targets). The mechanism of action studies and crystal structure of the PRMT3-SGC707 complex confirm the allosteric inhibition mode. Importantly, SGC707 engages PRMT3 and potently inhibits its methyltransferase activity in cells. It is also bioavailable and suitable for animal studies. This well-characterized chemical probe is an excellent tool to further study the role of PRMT3 in health and disease.
Keywords
POLY(A)-BINDING PROTEIN; IN-VITRO; METHYLATION; EXPANSIONS; SUBSTRATE; GENE; VIVO; allosteric inhibition; chemical probes; enzyme inhibitors; histone methylation; X-ray diffraction
ISSN
1433-7851
URI
https://pubs.kist.re.kr/handle/201004/125564
DOI
10.1002/anie.201412154
Appears in Collections:
KIST Article > 2015
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