4.7 Article

Design, Synthesis, and Biological Activity of Substrate Competitive SMYD2 Inhibitors

Journal

JOURNAL OF MEDICINAL CHEMISTRY
Volume 59, Issue 24, Pages 11079-11097

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jmedchem.6b01303

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Funding

  1. DOE Office of Science [DE-AC02-06CH11357]

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Protein lysine methyltransferases (KMTs) have emerged as important regulators of epigenetic signaling. These enzymes catalyze the transfer of donor methyl groups from the cofactor S-adenosylmethionine to specific acceptor lysine residues on histones, leading to changes in chromatin structure and transcriptional regulation. These enzymes also methylate an array of nonhistone proteins, suggesting additional mechanisms by which they influence cellular physiology. SMYD2 is reported to be an oncogenic methyltransferase that represses the functional activity of the tumor suppressor proteins p53 and RB. HTS screening led to identification of five distinct substrate-competitive chemical,series. Determination of liganded crystal structures of SMYD2 contributed significantly to hit-to-lead design efforts, culminating in the creation of potent and selective inhibitors that were used to understand the functional consequences of SMYD2 inhibition. Taken together, these results have broad implications for inhibitor design against KMTs and clearly demonstrate the potential for developing novel therapies against these enzymes.

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