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Structure–Activity Relationships in Metal-Binding Pharmacophores for Influenza Endonuclease

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Figshare2018-10-31 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Structure_Activity_Relationships_in_Metal-Binding_Pharmacophores_for_Influenza_Endonuclease/7277168
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Metalloenzymes represent an important target space for drug discovery. A limitation to the early development of metalloenzyme inhibitors has been the lack of established structure–activity relationships (SARs) for molecules that bind the metal ion cofactor(s) of a metalloenzyme. Herein, we employed a bioinorganic perspective to develop an SAR for inhibition of the metalloenzyme influenza RNA polymerase PAN endonuclease. The identified trends highlight the importance of the electronics of the metal-binding pharmacophore (MBP), in addition to MBP sterics, for achieving improved inhibition and selectivity. By optimization of the MBPs for PAN endonuclease, a class of highly active and selective fragments was developed that displays IC50 values 50 values of ∼10 nM, illustrating the utility of a metal-centric development campaign in generating highly active and selective metalloenzyme inhibitors.
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2018-10-31
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