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Potent and selective SETDB1 covalent negative allosteric modulator reduces methyltransferase activity in cells

2025/02/24 by Mélanie Uguen, Devan J. Shell, Madhushika Silva +23 · 1 voice
Biochemistry, Genetics and Molecular Biology · #Cancer-related gene regulation #Epigenetics and DNA Methylation #RNA modifications and cancer

paper · pdf · doi:10.1038/s41467-025-57005-3

openalex publication_date 2025/02/24 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/01

Abstract

A promising drug target, SETDB1, is a dual methyl-lysine (Kme) reader and methyltransferase implicated in cancer and neurodegenerative disease progression. To help understand the role of the triple Tudor domain (3TD) of SETDB1, its Kme reader, we first identify a low micromolar potency small molecule ligand, UNC6535, which occupies simultaneously both the TD2 and TD3 reader binding sites. Further optimization leads to the discovery of UNC10013, a covalent 3TD ligand targeting Cys385 of SETDB1. UNC10013 is potent with a kinact/KI of 1.0 × 106 M−1s−1 and demonstrates proteome-wide selectivity. In cells, negative allosteric modulation of SETDB1-mediated Akt methylation occurs after treatment with UNC10013. Therefore, UNC10013 is a potent, selective, and cell-active covalent ligand for the 3TD of SETDB1, demonstrating negative allosteric modulator properties and making it a promising tool to study the biological role of SETDB1 in disease progression. Design of cysteine-targeting analogs of a reversible SETDB1 triple Tudor domain (3TD) ligand, UNC6535, led to UNC10013, a potent covalent ligand with high selectivity. UNC10013 demonstrated allosteric inhibition of SETDB1-mediated Akt methylation in cells, a promising approach to SETDB1 therapeutics.

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