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(R)-PFI-2 is a potent and selective inhibitor of SETD7 methyltransferase activity in cells.

Authors :
Barsyte-Lovejoy, Dalia
Li, Fengling
Oudhoff, Menno J.
Tatlock, John H.
Dong, Aiping
Hong Zeng
Hong Wu
Freeman, Spencer A.
Schapira, Matthieu
Senisterra, Guillermo A.
Kuznetsova, Ekaterina
Marcellus, Richard
Allali-Hassani, Abdellah
Kennedy, Steven
Lambert, Jean-Philippe
Couzens, Amber L.
Aman, Ahmed
Gingras, Anne-Claude
Al-Awar, Rima
Fish, Paul V.
Source :
Proceedings of the National Academy of Sciences of the United States of America; 9/2/2014, Vol. 111 Issue 35, p12853-12858, 6p
Publication Year :
2014

Abstract

SET domain containing (lysine methyltransferase) 7 (SETD7) is implicated in multiple signaling and disease related pathways with a broad diversity of reported substrates. Here, we report the discovery of (R)-PFI-2-a first-in-class, potent (K<subscript>i</subscript><superscript>app</superscript> = 0.33 nM), selective, and cell-active inhibitor of the methyltransferase activity of human SETD7 -- and its 500-fold less active enantiomer, (S)-PFI-2. (R)-PFI-2 exhibits an unusual cofactor-dependent and substrate-competitive inhibitory mechanism by occupying the substrate peptide binding groove of SETD7, including the catalytic lysine-binding channel, and by making direct contact with the donor methyl group of the cofactor, 5-adeno-sylmethionine. Chemoproteomics experiments using a biotinylated derivative of (R)-PFI-2 demonstrated dose-dependent competition for binding to endogenous SETD7 in MCF7 cells pretreated with (R)-PFI-2. In murine embryonic fibroblasts, (R)-PFI-2 treatment phenocopied the effects of Setd7 deficiency on Hippo pathway signaling, via modulation of the transcriptional coactivator Yes-associated protein (YAP) and regulation of YAP target genes. In confluent WICF7 cells, (R)-PFI-2 rapidly altered YAP localization, suggesting continuous and dynamic regulation of YAP by the methyltransferase activity of SETD7. These data establish (R)-PFI-2 and related compounds as a valuable tool-kit for the study of the diverse roles of SETD7 in cells and further validate protein methyltransferases as a drug-gable target class. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00278424
Volume :
111
Issue :
35
Database :
Complementary Index
Journal :
Proceedings of the National Academy of Sciences of the United States of America
Publication Type :
Academic Journal
Accession number :
98176361
Full Text :
https://doi.org/10.1073/pnas.1407358111