AbstractThe fusogenic subdomain of the Ebola virus envelope glycoprotein is an internal sequence located ca. 20 residues downstream the N-terminus of the glycoprotein transmembrane subunit. Partitioning of the Ebola fusion peptide into membranes containing phosphatidylinositol in the absence of Ca2+ stabilizes an α-helical conformation, and gives rise to vesicle efflux but not vesicle fusion. In the presence of millimolar Ca2+ the membrane-bound peptide adopts an extended β-structure, and induces inter-vesicle mixing of lipids. The peptide conformational polymorphism may be related to the flexibility of the virus–cell intermembrane fusogenic complex
AbstractThe structural determinants underlying the functionality of viral internal fusion peptides (...
AbstractThe membrane-interacting domain that precedes the transmembrane anchor of Ebola glycoprotein...
The Ebola virus (EBOV) envelope glycoprotein (GP) mediates the fusion of the virion membrane with th...
The fusogenic subdomain of the Ebola virus envelope glycoprotein is an internal sequence located ca....
AbstractThe fusogenic subdomain of the Ebola virus envelope glycoprotein is an internal sequence loc...
AbstractThe fusion peptide of Ebola virus comprises a highly hydrophobic sequence located downstream...
The Ebola virus (EBOV) envelope glycoprotein (GP) is a membrane fusion machine required for virus en...
The Ebola virus (EBOV) envelope glycoprotein (GP) is a membrane fusion machine required for virus en...
The lipid-destabilizing properties of the N-terminal domain of the GP2 of Ebola virus were in...
The Ebola fusion peptide (EBO₁₆) is a hydrophobic domain that belongs to the GP2 membrane fusion pro...
The lipid-destabilizing properties of the N-terminal domain of the GP2 of Ebola virus were investiga...
Ebola virus and Sudan virus are members of the family <i>Filoviridae</i> of nonsegmented negative-st...
The structural determinants underlying the functionality of viral internal fusion peptides (IFPs) ar...
The pathogenesis of the Ebola virus which leads to a severe hemorrhagic fever in hosts is a very com...
9 p. : il., tab.The Ebola fusion peptide (EBO16) is a hydrophobic domain that belongs to the GP2 mem...
AbstractThe structural determinants underlying the functionality of viral internal fusion peptides (...
AbstractThe membrane-interacting domain that precedes the transmembrane anchor of Ebola glycoprotein...
The Ebola virus (EBOV) envelope glycoprotein (GP) mediates the fusion of the virion membrane with th...
The fusogenic subdomain of the Ebola virus envelope glycoprotein is an internal sequence located ca....
AbstractThe fusogenic subdomain of the Ebola virus envelope glycoprotein is an internal sequence loc...
AbstractThe fusion peptide of Ebola virus comprises a highly hydrophobic sequence located downstream...
The Ebola virus (EBOV) envelope glycoprotein (GP) is a membrane fusion machine required for virus en...
The Ebola virus (EBOV) envelope glycoprotein (GP) is a membrane fusion machine required for virus en...
The lipid-destabilizing properties of the N-terminal domain of the GP2 of Ebola virus were in...
The Ebola fusion peptide (EBO₁₆) is a hydrophobic domain that belongs to the GP2 membrane fusion pro...
The lipid-destabilizing properties of the N-terminal domain of the GP2 of Ebola virus were investiga...
Ebola virus and Sudan virus are members of the family <i>Filoviridae</i> of nonsegmented negative-st...
The structural determinants underlying the functionality of viral internal fusion peptides (IFPs) ar...
The pathogenesis of the Ebola virus which leads to a severe hemorrhagic fever in hosts is a very com...
9 p. : il., tab.The Ebola fusion peptide (EBO16) is a hydrophobic domain that belongs to the GP2 mem...
AbstractThe structural determinants underlying the functionality of viral internal fusion peptides (...
AbstractThe membrane-interacting domain that precedes the transmembrane anchor of Ebola glycoprotein...
The Ebola virus (EBOV) envelope glycoprotein (GP) mediates the fusion of the virion membrane with th...