Influenza virus PA endonuclease has recently emerged as an attractive target for the development of novel antiviral therapeutics. This is an enzyme with divalent metal ion(s) (Mg 2+ or Mn 2+) in its catalytic site: chelation of these metal cofactors is an attractive strategy to inhibit enzymatic activity. Here we report the activity of a series of N-acylhydrazones in an enzymatic assay with PA-Nter endonuclease, as well as in cell-based influenza vRNP reconstitution and virus yield assays. Several N-acylhydrazones were found to have promising anti-influenza activity in the low micromolar concentration range and good selectivity. Computational docking studies are carried on to investigate the key features that determine inhibition of the endonuclease enzyme by N-acylhydrazones. Moreover, we here describe the crystal structure of PA-Nter in complex with one of the most active inhibitors, revealing its interactions within the protein's active site. © The Author(s) 2016.

N-acylhydrazone inhibitors of influenza virus PA endonuclease with versatile metal binding modes

DE LUCA, Laura;
2016-01-01

Abstract

Influenza virus PA endonuclease has recently emerged as an attractive target for the development of novel antiviral therapeutics. This is an enzyme with divalent metal ion(s) (Mg 2+ or Mn 2+) in its catalytic site: chelation of these metal cofactors is an attractive strategy to inhibit enzymatic activity. Here we report the activity of a series of N-acylhydrazones in an enzymatic assay with PA-Nter endonuclease, as well as in cell-based influenza vRNP reconstitution and virus yield assays. Several N-acylhydrazones were found to have promising anti-influenza activity in the low micromolar concentration range and good selectivity. Computational docking studies are carried on to investigate the key features that determine inhibition of the endonuclease enzyme by N-acylhydrazones. Moreover, we here describe the crystal structure of PA-Nter in complex with one of the most active inhibitors, revealing its interactions within the protein's active site. © The Author(s) 2016.
2016
Inglese
ELETTRONICO
Nature Publishing Group
6
Article number - 31500
1
14
14
https://www.nature.com/articles/srep31500
Internazionale
Esperti anonimi
RNA PROMOTER, POLYMERASE, SUBUNIT, DOMAIN, DERIVATIVES, RESISTANT, DISCOVERY, PHARMACOPHORE, VALIDATION, SITE
info:eu-repo/semantics/article
Carcelli, M; Rogolino, D; Gatti, A; De Luca, Laura; Sechi, M; Kumar, G.; White, S. W.; Stevaert, A.; Naesens, L.
14.a Contributo in Rivista::14.a.1 Articolo su rivista
9
262
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11570/3093184
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