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Design, synthesis, and protein methyltransferase activity of a unique set of constrained amine containing compounds.


ABSTRACT: Epigenetic alterations relate to various human diseases, and developing inhibitors of Kme regulatory proteins is considered to be a new frontier for drug discovery. We were inspired by the known multicyclic ligands, UNC669 and UNC926, which are the first reported small molecule ligands for a methyl-lysine binding domain. We hypothesized that reducing the conformational flexibility of the key amine moiety of UNC669 would result in a unique set of ligands. Twenty-five novel compounds containing a fused bi- or tricyclic amine or a spirocyclic amine were designed and synthesized. To gauge the potential of these amine-containing compounds to interact with Kme regulatory proteins, the compounds were screened against a panel of 24 protein methyltransferases. Compound 13 was discovered as a novel scaffold that interacts with SETD8 and could serve as a starting point for the future development of PKMT inhibitors.

SUBMITTER: Zhou H 

PROVIDER: S-EPMC4996710 | biostudies-literature | 2016 Sep

REPOSITORIES: biostudies-literature

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Design, synthesis, and protein methyltransferase activity of a unique set of constrained amine containing compounds.

Zhou Hao H   Che Xin X   Bao Guochen G   Wang Na N   Peng Li L   Barnash Kimberly D KD   Frye Stephen V SV   James Lindsey I LI   Bai Xu X  

Bioorganic & medicinal chemistry letters 20160803 18


Epigenetic alterations relate to various human diseases, and developing inhibitors of Kme regulatory proteins is considered to be a new frontier for drug discovery. We were inspired by the known multicyclic ligands, UNC669 and UNC926, which are the first reported small molecule ligands for a methyl-lysine binding domain. We hypothesized that reducing the conformational flexibility of the key amine moiety of UNC669 would result in a unique set of ligands. Twenty-five novel compounds containing a  ...[more]

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