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Structural basis for broad-spectrum binding of AT-9010 to flaviviral methyltransferases
by
Boura, Evzen
, Krejcova, Katerina
in
antiviral agents
/ Antiviral Agents - chemistry
/ Antiviral Agents - metabolism
/ Antiviral Agents - pharmacology
/ Antiviral drugs
/ Binding Sites
/ Biomedical and Life Sciences
/ Biomedicine
/ Coronaviruses
/ COVID-19
/ Crystallography
/ Crystallography, X-Ray
/ Crystals
/ Dengue fever
/ DNA-directed RNA polymerase
/ domain
/ Editing
/ Enzymes
/ Flaviviridae - enzymology
/ Glycerol
/ guanosine triphosphate
/ Guanosine Triphosphate - analogs & derivatives
/ Guanosine Triphosphate - chemistry
/ Guanosine Triphosphate - metabolism
/ Humans
/ hydrogen
/ Hydrogen bonding
/ Infectious Diseases
/ Medical Microbiology
/ medicine
/ methyltransferases
/ Methyltransferases - chemistry
/ Methyltransferases - genetics
/ Methyltransferases - metabolism
/ Models, Molecular
/ Original
/ Original Article
/ Pandemics
/ Polyethylene glycol
/ Protein Binding
/ Proteins
/ RNA
/ RNA polymerase
/ RNA viruses
/ sugars
/ Viral Proteins - chemistry
/ Viral Proteins - metabolism
/ Virology
/ virus replication
/ X-ray crystallography
/ X-ray diffraction
/ Zika virus
/ Zika Virus - enzymology
2025
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Structural basis for broad-spectrum binding of AT-9010 to flaviviral methyltransferases
by
Boura, Evzen
, Krejcova, Katerina
in
antiviral agents
/ Antiviral Agents - chemistry
/ Antiviral Agents - metabolism
/ Antiviral Agents - pharmacology
/ Antiviral drugs
/ Binding Sites
/ Biomedical and Life Sciences
/ Biomedicine
/ Coronaviruses
/ COVID-19
/ Crystallography
/ Crystallography, X-Ray
/ Crystals
/ Dengue fever
/ DNA-directed RNA polymerase
/ domain
/ Editing
/ Enzymes
/ Flaviviridae - enzymology
/ Glycerol
/ guanosine triphosphate
/ Guanosine Triphosphate - analogs & derivatives
/ Guanosine Triphosphate - chemistry
/ Guanosine Triphosphate - metabolism
/ Humans
/ hydrogen
/ Hydrogen bonding
/ Infectious Diseases
/ Medical Microbiology
/ medicine
/ methyltransferases
/ Methyltransferases - chemistry
/ Methyltransferases - genetics
/ Methyltransferases - metabolism
/ Models, Molecular
/ Original
/ Original Article
/ Pandemics
/ Polyethylene glycol
/ Protein Binding
/ Proteins
/ RNA
/ RNA polymerase
/ RNA viruses
/ sugars
/ Viral Proteins - chemistry
/ Viral Proteins - metabolism
/ Virology
/ virus replication
/ X-ray crystallography
/ X-ray diffraction
/ Zika virus
/ Zika Virus - enzymology
2025
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Structural basis for broad-spectrum binding of AT-9010 to flaviviral methyltransferases
by
Boura, Evzen
, Krejcova, Katerina
in
antiviral agents
/ Antiviral Agents - chemistry
/ Antiviral Agents - metabolism
/ Antiviral Agents - pharmacology
/ Antiviral drugs
/ Binding Sites
/ Biomedical and Life Sciences
/ Biomedicine
/ Coronaviruses
/ COVID-19
/ Crystallography
/ Crystallography, X-Ray
/ Crystals
/ Dengue fever
/ DNA-directed RNA polymerase
/ domain
/ Editing
/ Enzymes
/ Flaviviridae - enzymology
/ Glycerol
/ guanosine triphosphate
/ Guanosine Triphosphate - analogs & derivatives
/ Guanosine Triphosphate - chemistry
/ Guanosine Triphosphate - metabolism
/ Humans
/ hydrogen
/ Hydrogen bonding
/ Infectious Diseases
/ Medical Microbiology
/ medicine
/ methyltransferases
/ Methyltransferases - chemistry
/ Methyltransferases - genetics
/ Methyltransferases - metabolism
/ Models, Molecular
/ Original
/ Original Article
/ Pandemics
/ Polyethylene glycol
/ Protein Binding
/ Proteins
/ RNA
/ RNA polymerase
/ RNA viruses
/ sugars
/ Viral Proteins - chemistry
/ Viral Proteins - metabolism
/ Virology
/ virus replication
/ X-ray crystallography
/ X-ray diffraction
/ Zika virus
/ Zika Virus - enzymology
2025
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Structural basis for broad-spectrum binding of AT-9010 to flaviviral methyltransferases
Journal Article
Structural basis for broad-spectrum binding of AT-9010 to flaviviral methyltransferases
2025
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Overview
AT-9010 (2'-methyl-2'-fluoro guanosine triphosphate) is a GTP analog whose prodrug, AT-752 is under consideration in human medicine as a potential antiviral drug against certain flaviviruses. It was previously believed to inhibit viral replication by acting primarily as a chain terminator. However, it was discovered recently that it also binds the GTP binding site of the methyltransferase (MTase) domain of the orthoflavivirus polymerase, thus interfering with RNA capping. Here, we investigated the binding of AT-9010 to Ntaya and Zika virus MTases. Structural analysis using X-ray crystallography revealed similar interactions between the base and sugar moieties of AT-9010 and key residues in both MTases, although differences in hydrogen bonding were observed. Our analysis also suggested that the triphosphate part of AT-9010 is flexible. Despite minor variations, the overall binding mode of AT-9010 was found to be the same for all of the flaviviral MTases examined, suggesting a structural basis for the efficacy of AT-9010 against multiple orthoflavivirus MTases.
Publisher
Springer Vienna,Springer Nature B.V
Subject
/ Antiviral Agents - chemistry
/ Antiviral Agents - metabolism
/ Antiviral Agents - pharmacology
/ Biomedical and Life Sciences
/ COVID-19
/ Crystals
/ domain
/ Editing
/ Enzymes
/ Glycerol
/ Guanosine Triphosphate - analogs & derivatives
/ Guanosine Triphosphate - chemistry
/ Guanosine Triphosphate - metabolism
/ Humans
/ hydrogen
/ medicine
/ Methyltransferases - chemistry
/ Methyltransferases - genetics
/ Methyltransferases - metabolism
/ Original
/ Proteins
/ RNA
/ sugars
/ Virology
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