<div><p>The flavivirus membrane fusion is triggered by the acid pH of the endosomes after virus endocytosis. The proposed mechanism involves changes in the protonation state of conserved histidine residues of the E protein present in the viral surface that undergoes a series of structural rearrangements that result in the fusion between the endosome and viral bilayers. We studied the pH dependence of E protein rearrangements of dengue virus type 2, used as a model, in the pH range experimented by the virus along the fusion process. We employed a low computational cost scheme to explore the behavior of the E protein by molecular dynamics (MD) simulations of complete systems that include the protein, the solvent, and ions. The procedure alter...
SummaryA central event in the invasion of a host cell by an enveloped virus is the fusion of viral a...
Hemagglutinin is a specific homotrimer glycoprotein on the surface of influenza virus envelope that ...
Viral fusion proteins undergo dramatic conformational transitions during membrane fusion. For viruse...
Flaviviruses are enveloped viruses which include human pathogens that are predominantly transmitted ...
AbstractOne of the key steps in the infection of the cell by dengue virus is a pH-induced conformati...
The Dengue has become a global public health threat, with over 100 million infections annually; to d...
Many viral fusion proteins only become activated under mildly acidic condition (pH 4.5-6.5) close to...
Membrane fusion is a crucial step in flavivirus infections and a potential target for antiviral stra...
ABSTRACT Flavivirus particle maturation, a process essential for virus infectivity, has been mostly ...
<p>Domains DI, DII, and DIII of E are colored red, yellow, and blue, respectively. The partially alp...
International audienceViral membrane fusion proceeds through a sequence of steps that are driven by ...
During host cell infection by flaviviruses such as dengue and Zika, acidic pH within the endosome tr...
Hemagglutinin (HA), the membrane-bound fusion protein of the influenza virus, enables the entry of v...
Regulated by pH, membrane-anchored proteins E and M function during dengue virus maturation and memb...
During host cell infection by flaviviruses such as dengue and Zika, acidic pH within the endosome tr...
SummaryA central event in the invasion of a host cell by an enveloped virus is the fusion of viral a...
Hemagglutinin is a specific homotrimer glycoprotein on the surface of influenza virus envelope that ...
Viral fusion proteins undergo dramatic conformational transitions during membrane fusion. For viruse...
Flaviviruses are enveloped viruses which include human pathogens that are predominantly transmitted ...
AbstractOne of the key steps in the infection of the cell by dengue virus is a pH-induced conformati...
The Dengue has become a global public health threat, with over 100 million infections annually; to d...
Many viral fusion proteins only become activated under mildly acidic condition (pH 4.5-6.5) close to...
Membrane fusion is a crucial step in flavivirus infections and a potential target for antiviral stra...
ABSTRACT Flavivirus particle maturation, a process essential for virus infectivity, has been mostly ...
<p>Domains DI, DII, and DIII of E are colored red, yellow, and blue, respectively. The partially alp...
International audienceViral membrane fusion proceeds through a sequence of steps that are driven by ...
During host cell infection by flaviviruses such as dengue and Zika, acidic pH within the endosome tr...
Hemagglutinin (HA), the membrane-bound fusion protein of the influenza virus, enables the entry of v...
Regulated by pH, membrane-anchored proteins E and M function during dengue virus maturation and memb...
During host cell infection by flaviviruses such as dengue and Zika, acidic pH within the endosome tr...
SummaryA central event in the invasion of a host cell by an enveloped virus is the fusion of viral a...
Hemagglutinin is a specific homotrimer glycoprotein on the surface of influenza virus envelope that ...
Viral fusion proteins undergo dramatic conformational transitions during membrane fusion. For viruse...