Covalent inhibition of NSD1 histone methyltransferase Journal Article


Authors: Huang, H.; Howard, C. A.; Zari, S.; Cho, H. J.; Shukla, S.; Li, H.; Ndoj, J.; González-Alonso, P.; Nikolaidis, C.; Abbott, J.; Rogawski, D. S.; Potopnyk, M. A.; Kempinska, K.; Miao, H.; Purohit, T.; Henderson, A.; Mapp, A.; Sulis, M. L.; Ferrando, A.; Grembecka, J.; Cierpicki, T.
Article Title: Covalent inhibition of NSD1 histone methyltransferase
Abstract: The nuclear receptor-binding SET domain (NSD) family of histone methyltransferases is associated with various malignancies, including aggressive acute leukemia with NUP98-NSD1 translocation. While NSD proteins represent attractive drug targets, their catalytic SET domains exist in autoinhibited conformation, presenting notable challenges for inhibitor development. Here, we employed a fragment-based screening strategy followed by chemical optimization, which resulted in the development of the first-in-class irreversible small-molecule inhibitors of the nuclear receptor-binding SET domain protein 1 (NSD1) SET domain. The crystal structure of NSD1 in complex with covalently bound ligand reveals a conformational change in the autoinhibitory loop of the SET domain and formation of a channel-like pocket suitable for targeting with small molecules. Our covalent lead—compound BT5—demonstrates on-target activity in NUP98-NSD1 leukemia cells, including inhibition of histone H3 lysine 36 dimethylation and downregulation of target genes, and impaired colony formation in an NUP98-NSD1 patient sample. This study will facilitate the development of the next generation of potent and selective inhibitors of the NSD histone methyltransferases. [Figure not available: see fulltext.] © 2020, The Author(s), under exclusive licence to Springer Nature America, Inc.
Journal Title: Nature Chemical Biology
Volume: 16
Issue: 12
ISSN: 1552-4450
Publisher: Nature Publishing Group  
Date Published: 2020-12-01
Start Page: 1403
End Page: 1410
Language: English
DOI: 10.1038/s41589-020-0626-6
PUBMED: 32868895
PROVIDER: scopus
PMCID: PMC7669657
DOI/URL:
Notes: Article -- Export Date: 1 December 2020 -- Source: Scopus
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  1. Maria Luisa Sulis
    42 Sulis