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Broad-spectrum activity against mosquito-borne flaviviruses achieved by a targeted protein degradation mechanism
by
Fischer, Eric S.
, Li, Zhengnian
, Donovan, Katherine A.
, He, Zhixiang
, Yang, Priscilla L.
, Qiu, Xueer
, Golden, Ryan P.
, Gray, Nathanael S.
, Bailey, Adam
, Zhang, Tinghu
, Liu, Han-Yuan
, Reindl, Theresia
in
13/106
/ 13/109
/ 38/22
/ 38/23
/ 631/326/22/1295
/ 631/326/596/1413
/ 631/92/613
/ 82/1
/ 82/29
/ Animals
/ Antiviral agents
/ Antiviral Agents - pharmacology
/ Antiviral drugs
/ Aquatic insects
/ Biodegradation
/ Cell Line
/ Chimeras
/ Culicidae - virology
/ Dengue fever
/ Dengue Virus - drug effects
/ Dengue Virus - genetics
/ Dengue Virus - physiology
/ Drug development
/ Env protein
/ Flaviviridae
/ Flavivirus - drug effects
/ Flavivirus - genetics
/ Flavivirus - metabolism
/ Genetic diversity
/ Humanities and Social Sciences
/ Humans
/ Inhibitors
/ Membrane fusion
/ Mosquitoes
/ multidisciplinary
/ Particle production
/ Proteins
/ Proteolysis
/ Proteolysis - drug effects
/ Science
/ Science (multidisciplinary)
/ Ubiquitin-protein ligase
/ Ubiquitin-Protein Ligases - metabolism
/ Vector-borne diseases
/ Viral envelope proteins
/ Viral Envelope Proteins - metabolism
/ Virus Internalization - drug effects
/ Viruses
2024
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Broad-spectrum activity against mosquito-borne flaviviruses achieved by a targeted protein degradation mechanism
by
Fischer, Eric S.
, Li, Zhengnian
, Donovan, Katherine A.
, He, Zhixiang
, Yang, Priscilla L.
, Qiu, Xueer
, Golden, Ryan P.
, Gray, Nathanael S.
, Bailey, Adam
, Zhang, Tinghu
, Liu, Han-Yuan
, Reindl, Theresia
in
13/106
/ 13/109
/ 38/22
/ 38/23
/ 631/326/22/1295
/ 631/326/596/1413
/ 631/92/613
/ 82/1
/ 82/29
/ Animals
/ Antiviral agents
/ Antiviral Agents - pharmacology
/ Antiviral drugs
/ Aquatic insects
/ Biodegradation
/ Cell Line
/ Chimeras
/ Culicidae - virology
/ Dengue fever
/ Dengue Virus - drug effects
/ Dengue Virus - genetics
/ Dengue Virus - physiology
/ Drug development
/ Env protein
/ Flaviviridae
/ Flavivirus - drug effects
/ Flavivirus - genetics
/ Flavivirus - metabolism
/ Genetic diversity
/ Humanities and Social Sciences
/ Humans
/ Inhibitors
/ Membrane fusion
/ Mosquitoes
/ multidisciplinary
/ Particle production
/ Proteins
/ Proteolysis
/ Proteolysis - drug effects
/ Science
/ Science (multidisciplinary)
/ Ubiquitin-protein ligase
/ Ubiquitin-Protein Ligases - metabolism
/ Vector-borne diseases
/ Viral envelope proteins
/ Viral Envelope Proteins - metabolism
/ Virus Internalization - drug effects
/ Viruses
2024
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Broad-spectrum activity against mosquito-borne flaviviruses achieved by a targeted protein degradation mechanism
by
Fischer, Eric S.
, Li, Zhengnian
, Donovan, Katherine A.
, He, Zhixiang
, Yang, Priscilla L.
, Qiu, Xueer
, Golden, Ryan P.
, Gray, Nathanael S.
, Bailey, Adam
, Zhang, Tinghu
, Liu, Han-Yuan
, Reindl, Theresia
in
13/106
/ 13/109
/ 38/22
/ 38/23
/ 631/326/22/1295
/ 631/326/596/1413
/ 631/92/613
/ 82/1
/ 82/29
/ Animals
/ Antiviral agents
/ Antiviral Agents - pharmacology
/ Antiviral drugs
/ Aquatic insects
/ Biodegradation
/ Cell Line
/ Chimeras
/ Culicidae - virology
/ Dengue fever
/ Dengue Virus - drug effects
/ Dengue Virus - genetics
/ Dengue Virus - physiology
/ Drug development
/ Env protein
/ Flaviviridae
/ Flavivirus - drug effects
/ Flavivirus - genetics
/ Flavivirus - metabolism
/ Genetic diversity
/ Humanities and Social Sciences
/ Humans
/ Inhibitors
/ Membrane fusion
/ Mosquitoes
/ multidisciplinary
/ Particle production
/ Proteins
/ Proteolysis
/ Proteolysis - drug effects
/ Science
/ Science (multidisciplinary)
/ Ubiquitin-protein ligase
/ Ubiquitin-Protein Ligases - metabolism
/ Vector-borne diseases
/ Viral envelope proteins
/ Viral Envelope Proteins - metabolism
/ Virus Internalization - drug effects
/ Viruses
2024
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Broad-spectrum activity against mosquito-borne flaviviruses achieved by a targeted protein degradation mechanism
Journal Article
Broad-spectrum activity against mosquito-borne flaviviruses achieved by a targeted protein degradation mechanism
2024
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Overview
Viral genetic diversity presents significant challenges in developing antivirals with broad-spectrum activity and high barriers to resistance. Here we report development of proteolysis targeting chimeras (PROTACs) targeting the dengue virus envelope (E) protein through coupling of known E fusion inhibitors to ligands of the CRL4
CRBN
E3 ubiquitin ligase. The resulting small molecules block viral entry through inhibition of E-mediated membrane fusion and interfere with viral particle production by depleting intracellular E in infected Huh 7.5 cells. This activity is retained in the presence of point mutations previously shown to confer partial resistance to the parental inhibitors due to decreased inhibitor-binding. The E PROTACs also exhibit broadened spectrum of activity compared to the parental E inhibitors against a panel of mosquito-borne flaviviruses. These findings encourage further exploration of targeted protein degradation as a differentiated and potentially advantageous modality for development of broad-spectrum direct-acting antivirals.
Developing broad antiviral drugs against dengue is challenging due to genetic diversity. Here, the authors generate PROTACs targeting the dengue virus envelope protein demonstrating improved potency and broadened activity against other mosquito-borne flaviviruses as compared to the parental inhibitors.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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