How simple membrane peptides performed such essential proto-cellular functions as transport of ions and organic matter across membranes separating the interior of the cell from the environment, capture and utilization of energy, and transduction of environmental signals, is a key question in protobiological evolution. On the basis of detailed, molecular-level computer simulations we investigate how these peptides insert into membranes, self-assemble into higher-order structures and acquire functions. We have studied the insertion of an a-helical peptide containing leucine (L) and serine (S) of the form (LSLLLSL)S into a model membrane. The transmembrane state is metastable, and approximately 15 kcal/mol is required to insert the peptide int...
A large number of key cellular functions such as signalling and transport are performed and regulate...
The membranes of cells are highly complex and heterogeneous structures that fulfill multiple vital t...
AbstractThe transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric...
If peptides consist of nonpolar residues only, they become inserted into the nonpolar phase. As demo...
The interaction of α-helical peptides with lipid bilayers is central to our understanding of the phy...
Membrane insertion of small peptides plays important roles in antimicrobial defense, toxin actions, ...
AbstractThe interaction of α-helical peptides with lipid bilayers is central to our understanding of...
Membrane proteins (MP) are a class of biomolecules responsible for important biological processes in...
The transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric bundle ...
Peptide-membrane interactions play an important role in a number of biological processes, such as an...
AbstractThe insertion of the M2 transmembrane peptide from influenza A virus into a membrane has bee...
Membrane proteins are responsible for a variety of key cellular functions including transport of ess...
By manipulating the various physicochemical properties of amino acids, the design of peptides with s...
Protein/peptide interactions with cellular membranes are highly complex due to a myriad of membrane ...
AbstractCharged and polar amino acids in the transmembrane domains of integral membrane proteins can...
A large number of key cellular functions such as signalling and transport are performed and regulate...
The membranes of cells are highly complex and heterogeneous structures that fulfill multiple vital t...
AbstractThe transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric...
If peptides consist of nonpolar residues only, they become inserted into the nonpolar phase. As demo...
The interaction of α-helical peptides with lipid bilayers is central to our understanding of the phy...
Membrane insertion of small peptides plays important roles in antimicrobial defense, toxin actions, ...
AbstractThe interaction of α-helical peptides with lipid bilayers is central to our understanding of...
Membrane proteins (MP) are a class of biomolecules responsible for important biological processes in...
The transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric bundle ...
Peptide-membrane interactions play an important role in a number of biological processes, such as an...
AbstractThe insertion of the M2 transmembrane peptide from influenza A virus into a membrane has bee...
Membrane proteins are responsible for a variety of key cellular functions including transport of ess...
By manipulating the various physicochemical properties of amino acids, the design of peptides with s...
Protein/peptide interactions with cellular membranes are highly complex due to a myriad of membrane ...
AbstractCharged and polar amino acids in the transmembrane domains of integral membrane proteins can...
A large number of key cellular functions such as signalling and transport are performed and regulate...
The membranes of cells are highly complex and heterogeneous structures that fulfill multiple vital t...
AbstractThe transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric...