Design of Selective Histone Deacetylase Inhibitors: Rethinking Classical Pharmacophore
Jelena Melesina, Lucas Praetorius, Conrad Veranso Simoben, Dina Robaa, Wolfgang Sippl
Abstract
Jelena Melesina, Lucas Praetorius, Conrad Veranso Simoben, Dina Robaa, Wolfgang Sippl
Abstract
For two decades, a classical pharmacophore model comprising a zinc binding group, a linker and a cap group, has been used for the development of histone deacetylase (HDAC) inhibitors. However, some of the recently reported selective HDAC inhibitors targeting additional, usually subtype specific, cavities in the binding pocket show supplementary features which do not fit this classical pharmacophore. We, therefore, propose an extended pharmacophore model, which can describe almost all currently known HDAC inhibitors. This pharmacophore consists of six pharmacophoric features and should be helpful for the classification and design of selective HDAC inhibitors.
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For two decades, a classical pharmacophore model comprising a zinc binding group, a linker and a cap group, has been used for the development of histone deacetylase (HDAC) inhibitors. However, some of the recently reported selective HDAC inhibitors targeting additional, usually subtype specific, cavities in the binding pocket show supplementary features which do not fit this classical pharmacophore. We, therefore, propose an extended pharmacophore model, which can describe almost all currently known HDAC inhibitors. This pharmacophore consists of six pharmacophoric features and should be helpful for the classification and design of selective HDAC inhibitors.
Key concepts: Pharmacophore, Histone deacetylase, Chemistry, Linker, Computational biology, Stereochemistry, Histone, Acetylation