Our molecular simulations reveal that wild-type influenza fusion peptides are able to stabilize a highly fusogenic pre-fusion structure, i.e. a peptide bundle formed by four or more trans-membrane arranged fusion peptides. We rationalize that the lipid rim around such bundle has a non-vanishing rim energy (line-tension), which is essential to (i) stabilize the initial contact point between the fusing bilayers, i.e. the stalk, and (ii) drive its subsequent evolution. Such line-tension controlled fusion event does not proceed along the hypothesized standard stalk-hemifusion pathway. In modeled influenza fusion, single point mutations in the influenza fusion peptide either completely inhibit fusion (mutants G1V and W14A) or, intriguingly, spec...
AbstractA molecular model of the low-pH-induced membrane fusion by influenza hemagglutinin (HA) is p...
Influenza virus is one of the most devastating human pathogens. In order to infect host cells, this ...
AbstractViral fusion peptides are short N-terminal regions of type-1 viral fusion proteins that are ...
Our molecular simulations reveal that wild-type influenza fusion peptides are able to stabilize a hi...
Our molecular simulations reveal that wild-type influenza fusion peptides are able to stabilize a hi...
Fusion peptides from influenza hemagglutinin act on membranes to promote membrane fusion, but the me...
Fusion peptides are moderately hydrophobic segments of viral and nonviral membrane fusion proteins t...
Regulatory features of protein-induced membrane fusion are largely unclear, particularly at the leve...
Fusion peptides are moderately hydrophobic segments of viral and nonviral membrane fusion proteins t...
AbstractA detailed molecular dynamics study of the haemagglutinin fusion peptide (N-terminal 20 resi...
During the infection process, the influenza fusion peptide (FP) inserts into the host membrane, play...
Influenza virus penetrates cells by fusion of viral and endosomal membranes catalyzed by the viral h...
AbstractThe mechanism of influenza hemagglutinin (HA) mediated membrane fusion has been intensively ...
Viral fusion peptides are short N-terminal regions of type-1 viral fusion proteins that are critical...
Fusion is a crucial event in the infection of animal cells by enveloped viruses (e.g., HIV or influe...
AbstractA molecular model of the low-pH-induced membrane fusion by influenza hemagglutinin (HA) is p...
Influenza virus is one of the most devastating human pathogens. In order to infect host cells, this ...
AbstractViral fusion peptides are short N-terminal regions of type-1 viral fusion proteins that are ...
Our molecular simulations reveal that wild-type influenza fusion peptides are able to stabilize a hi...
Our molecular simulations reveal that wild-type influenza fusion peptides are able to stabilize a hi...
Fusion peptides from influenza hemagglutinin act on membranes to promote membrane fusion, but the me...
Fusion peptides are moderately hydrophobic segments of viral and nonviral membrane fusion proteins t...
Regulatory features of protein-induced membrane fusion are largely unclear, particularly at the leve...
Fusion peptides are moderately hydrophobic segments of viral and nonviral membrane fusion proteins t...
AbstractA detailed molecular dynamics study of the haemagglutinin fusion peptide (N-terminal 20 resi...
During the infection process, the influenza fusion peptide (FP) inserts into the host membrane, play...
Influenza virus penetrates cells by fusion of viral and endosomal membranes catalyzed by the viral h...
AbstractThe mechanism of influenza hemagglutinin (HA) mediated membrane fusion has been intensively ...
Viral fusion peptides are short N-terminal regions of type-1 viral fusion proteins that are critical...
Fusion is a crucial event in the infection of animal cells by enveloped viruses (e.g., HIV or influe...
AbstractA molecular model of the low-pH-induced membrane fusion by influenza hemagglutinin (HA) is p...
Influenza virus is one of the most devastating human pathogens. In order to infect host cells, this ...
AbstractViral fusion peptides are short N-terminal regions of type-1 viral fusion proteins that are ...