Please use this identifier to cite or link to this item: https://doi.org/10.1016/j.chembiol.2016.03.010
Title: GNF-2 Inhibits Dengue Virus by Targeting Abl Kinases and the Viral e Protein
Authors: Clark, MJ
Miduturu, C
Schmidt, AG
Zhu, X
Pitts, JD
Wang, J
Potisopon, S
Zhang, J
Wojciechowski, A
CHU JANG HANN 
Gray, NS
Keywords: Animals
Antiviral Agents
Dengue Virus
Dose-Response Relationship, Drug
Humans
Mice
Microbial Sensitivity Tests
Molecular Structure
NIH 3T3 Cells
Protein Kinase Inhibitors
Proto-Oncogene Proteins c-abl
Pyrimidines
Structure-Activity Relationship
Viral Envelope Proteins
Issue Date: 21-Apr-2016
Publisher: Elsevier BV
Citation: Clark, MJ, Miduturu, C, Schmidt, AG, Zhu, X, Pitts, JD, Wang, J, Potisopon, S, Zhang, J, Wojciechowski, A, CHU JANG HANN, Gray, NS (2016-04-21). GNF-2 Inhibits Dengue Virus by Targeting Abl Kinases and the Viral e Protein. Cell Chemical Biology 23 (4) : 443-452. ScholarBank@NUS Repository. https://doi.org/10.1016/j.chembiol.2016.03.010
Abstract: © 2016 Elsevier Ltd. All rights reserved. Dengue virus infects more than 300 million people annually, yet there is no widely protective vaccine or drugs against the virus. Efforts to develop antivirals against classical targets such as the viral protease and polymerase have not yielded drugs that have advanced to the clinic. Here, we show that the allosteric Abl kinase inhibitor GNF-2 interferes with dengue virus replication via activity mediated by cellular Abl kinases but additionally blocks viral entry via an Abl-independent mechanism. To characterize this newly discovered antiviral activity, we developed disubstituted pyrimidines that block dengue virus entry with structure-activity relationships distinct from those driving kinase inhibition. We demonstrate that biotin- and fluorophore-conjugated derivatives of GNF-2 interact with the dengue glycoprotein, E, in the pre-fusion conformation that exists on the virion surface, and that this interaction inhibits viral entry. This study establishes GNF-2 as an antiviral compound with polypharmacological activity and provides "lead" compounds for further optimization efforts.
Source Title: Cell Chemical Biology
URI: https://scholarbank.nus.edu.sg/handle/10635/170680
ISSN: 2451-9456
2451-9448
DOI: 10.1016/j.chembiol.2016.03.010
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