Defining the Mechanism of Action and Enzymatic Selectivity of Psammaplin A against Its Epigenetic Targets

作者:Baud Matthias G J; Leiser Thomas; Haus Patricia; Samlal Sharon; Wong Ai Ching; Wood Robert J; Petrucci Vanessa; Gunaratnam Mekala; Hughes Siobhan M; Buluwela Lakjaya; Turlais Fabrice; Neidle Stephen; Meyer Almes Franz Josef; White Andrew J P; Fuchter Matthew J*
来源:Journal of Medicinal Chemistry, 2012, 55(4): 1731-1750.
DOI:10.1021/jm2016182

摘要

Psammaplin A (11c) is a marine metabolite previously reported to be a potent inhibitor of two classes of epigenetic enzymes: histone deacetylases and DNA methyltransferases. The design and synthesis of a focused library based on the psammaplin A core has been carried out to probe the molecular features of this molecule responsible for its activity. By direct in vitro assay of the free thiol generated upon reduction of the dimeric psammaplin scaffold, we have unambiguously demonstrated that 11c functions as a natural prodrug, with the reduced form being highly potent against HDAC1 in vitro (IC50 0.9 nM). Furthermore, we have shown it to have high isoform selectivity, being 360-fold selective for HDAC1 over HDAC6 and more than 1000-fold less potent against HDAC7 and HDAC8. SAR around our focused library revealed a number of features, most notably the oxime functionality to be important to this selectivity. Many of the compounds show significant cytotoxicity in A549, MCF7, and W138 cells, with the SAR of cytotcodcity correlating to HDAC inhibition. Furthermore, compound treatment causes upregulation of histone acetylation but little effect on tubulin acetylation. Finally, we have found no evidence for 11c functioning as a DNMT inhibitor.

  • 出版日期2012-2-23