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Evaluation of class I HDAC isoform selectivity of largazole analogues
Institution:1. ISEIT/Viseu, Instituto Piaget, Estrada do Alto do Gaio, Galifonge, Lordosa, Viseu, Portugal;2. Department of Chemistry & CESAM, University of Aveiro, Campus de Santiago, Aveiro, Portugal;1. Marine Genomics and Molecular Genetics Laboratory, Marine Science Institute, University of the Philippines, Diliman, Quezon City, 1101 Philippines;2. Core Facility for Bioinformatics, Philippine Genome Center, University of the Philippines, Philippines;3. National Institute of Molecular Biology and Biotechnology, University of the Philippines, Diliman, Quezon City, 1101 Philippines;1. School of Science and Engineering, University of the Sunshine Coast, 90 Sippy Downs Drive, Sippy Downs, Queensland 4556, Australia;2. The Marine Science Institute, University of the Philippines, Diliman, Quezon City 1101, Philippines;3. Australian Centre for Pacific Islands Research and School of Science and Engineering, University of the Sunshine Coast, Maroochydore, Queensland 4556, Australia
Abstract:Largazole is a potent class I selective histone deacetylase (HDAC) inhibitor. The majority of largazole analogues to date have modified the thiazole–thiazoline and the warhead moiety. In order to elucidate class I-specific structure–activity relationships, a series of analogues with modifications in the valine or the linker region were prepared and evaluated for their class I isoform selectivity. The inhibition profile showed that the C2 position of largazole has an optimal steric requirement for efficient HDAC inhibition and that substitution of the trans-alkene in the linker with an aromatic group results in complete loss of activity. This data will aid the design of class I isoform selective HDAC inhibitors.
Keywords:Largazole  HDAC inhibitor  Class I histone deacetylase  Isoform selectivity  Structure–activity relationship
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