Crystallographic fragment screening delivers diverse chemical scaffolds for Zika virus NS2B-NS3 protease inhibitor development

Author:

Ni XiaominORCID,Godoy Andre SchutzerORCID,Marples Peter G.ORCID,Fairhead MichaelORCID,Balcomb Blake H.,Ferla Matteo P.ORCID,Tomlinson Charles W.E.ORCID,Wang SiyiORCID,Giroud CharlineORCID,Aschenbrenner Jasmin CaraORCID,Lithgo Ryan M.ORCID,Winokan MaxORCID,Chandran Anu V.ORCID,Thompson WarrenORCID,Xavier Mary-AnnORCID,Williams Eleanor P.,Walsh MartinORCID,Fearon DarenORCID,Koekemoer LizbéORCID,von Delft FrankORCID

Abstract

AbstractZika virus (ZIKV) infections cause microcephaly in new-borns and Guillain-Barre syndrome in adults raising a significant global public health concern, yet no vaccines or antiviral drugs have been developed to prevent or treat ZIKV infections. The viral protease NS3 and its co-factor NS2B are essential for the cleavage of the Zika polyprotein precursor into individual structural and non-structural proteins and is therefore an attractive drug target. Generation of a robust crystal system of co-expressed NS2B-NS3 protease has enabled us to perform a crystallographic fragment screening campaign with 1076 fragments. 48 binders with diverse chemical scaffolds were identified in the active site of the protease, with another 6 fragment hits observed in a potential allosteric binding site. Our work provides potential starting points for the development of potent NS2B-NS3 protease inhibitors. Furthermore, we have structurally characterized a potential allosteric binding pocket, identifying opportunities for allosteric inhibitor development.

Publisher

Cold Spring Harbor Laboratory

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