We present a kinetic analysis or the membrane fusion activity of tick-borne encephalitis (TBE) virus and TBE-derived recombinant subviral particles (RSPs) in a liposomal model system. Fusion was monitored using a fluorescence assay involving pyrene-labeled phospholipids. Fusion was strictly dependent on low pH, with the optimum being at pH 5.3-5.5 and the threshold at pH 6.8. Fusion did not require a protein or carbohydrate receptor in the target liposomes. Preexposure to tow pH of the virus alone resulted in inactivation of its fusion activity. At the optimum pH for fusion and 37 degrees C, the rate and extent of fusion were very high, with more than 50% of the virus fusing within 2 s and the final extent of fusion being 70%. Lowering of t...
Semliki Forest virus (SFV) has been shown previously to fuse efficiently with cholesterol-and sphing...
There is controversy as to whether the cell entry mechanism of Sindbis virus (SIN) involves direct f...
Fluorescence assays for viral membrane fusion employ lipidic probes whose kinetics of fluorescence d...
We present a kinetic analysis or the membrane fusion activity of tick-borne encephalitis (TBE) virus...
AbstractWe present a kinetic analysis of the membrane fusion activity of tick-borne encephalitis (TB...
Flaviviruses deliver their RNA genome into the host-cell cytoplasm by fusing their lipid envelope wi...
The kinetics and extent of fusion between Sendai virus particles and liposomes were investigated wit...
The fusion of viruses with cells and liposomes is reviewed with focus on the analysis of the final e...
This paper presents a kinetic analysis of low-pH-induced fusion of Semliki Forest virus (SFV) with c...
Membrane fusion of the flavivirus tick-borne encephalitis virus is triggered by the mildly acidic pH...
We have studied the fusion activity of Sendai virus, a lipid-enveloped paramyxovirus, towards a line...
AbstractMany enveloped viruses employ low-pH-triggered membrane fusion during cell penetration. Solu...
Many phleboviruses (family Bunyaviridae) are emerging, medically important viruses. These viruses en...
Fluorescence assays for viral membrane fusion employ lipidic probes whose kinetics of fluorescence d...
Semliki Forest virus (SFV) has been shown previously to fuse efficiently with cholesterol-and sphing...
There is controversy as to whether the cell entry mechanism of Sindbis virus (SIN) involves direct f...
Fluorescence assays for viral membrane fusion employ lipidic probes whose kinetics of fluorescence d...
We present a kinetic analysis or the membrane fusion activity of tick-borne encephalitis (TBE) virus...
AbstractWe present a kinetic analysis of the membrane fusion activity of tick-borne encephalitis (TB...
Flaviviruses deliver their RNA genome into the host-cell cytoplasm by fusing their lipid envelope wi...
The kinetics and extent of fusion between Sendai virus particles and liposomes were investigated wit...
The fusion of viruses with cells and liposomes is reviewed with focus on the analysis of the final e...
This paper presents a kinetic analysis of low-pH-induced fusion of Semliki Forest virus (SFV) with c...
Membrane fusion of the flavivirus tick-borne encephalitis virus is triggered by the mildly acidic pH...
We have studied the fusion activity of Sendai virus, a lipid-enveloped paramyxovirus, towards a line...
AbstractMany enveloped viruses employ low-pH-triggered membrane fusion during cell penetration. Solu...
Many phleboviruses (family Bunyaviridae) are emerging, medically important viruses. These viruses en...
Fluorescence assays for viral membrane fusion employ lipidic probes whose kinetics of fluorescence d...
Semliki Forest virus (SFV) has been shown previously to fuse efficiently with cholesterol-and sphing...
There is controversy as to whether the cell entry mechanism of Sindbis virus (SIN) involves direct f...
Fluorescence assays for viral membrane fusion employ lipidic probes whose kinetics of fluorescence d...