AbstractWe have designed a four-helix protein that is expected to tetramerize in the membrane to form an ion channel with a structurally well-defined pore. This should serve as a model system to study the structural requirements of voltage-sensitive, ion-selective transmembrane channels. We have synthesized the peptide corresponding to the channel-lining helix. Circular dichroism (CD) spectroscopy shows that this peptide is helical in the membrane. Fluorescence resonance energy transfer (FRET) shows that this peptide, at low concentrations, forms aggregates in 1,2-dimyristoyl-sn-glycero-3-phosphatidylcholine (DMPC) liposomes and facilitates ion transport across liposomal membranes. Our data indicate that a component of the designed four-hel...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
AbstractTransmembrane peptide helices play key roles in signal transduction across cell membranes, y...
A molecular model is proposed for the transmembrane channels formed by alamethicin and related polyp...
AbstractWe have designed a four-helix protein that is expected to tetramerize in the membrane to for...
We have designed a four-helix protein that is expected to tetramerize in the membrane to form an ion...
We have designed a four-helix protein that is expected to tetramerize in the membrane to form an ion...
Transmembrane channels and pores have key roles in fundamental biological processes1 and in biotechn...
The design of peptides that assemble in membranes to form functional ion channels is challenging. Sp...
AbstractThe design, synthesis, modeling and in vitro testing of channel-forming peptides derived fro...
A novel 21-residue peptide incorporating six fluorinated amino acids was prepared. It was designed t...
The design, synthesis, modeling and in vitro testing of channel-forming peptides derived from the cy...
To identify sequence‐specific motifs associated with the formation of an ionic pore, we systematical...
AbstractIon channel-forming peptides enable us to study the conformational dynamics of a transmembra...
AbstractIon conduction properties of a de novo synthesized channel, formed from cyclic octa-peptides...
AbstractA molecular dynamics simulation has been performed on a synthetic membrane-spanning ion chan...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
AbstractTransmembrane peptide helices play key roles in signal transduction across cell membranes, y...
A molecular model is proposed for the transmembrane channels formed by alamethicin and related polyp...
AbstractWe have designed a four-helix protein that is expected to tetramerize in the membrane to for...
We have designed a four-helix protein that is expected to tetramerize in the membrane to form an ion...
We have designed a four-helix protein that is expected to tetramerize in the membrane to form an ion...
Transmembrane channels and pores have key roles in fundamental biological processes1 and in biotechn...
The design of peptides that assemble in membranes to form functional ion channels is challenging. Sp...
AbstractThe design, synthesis, modeling and in vitro testing of channel-forming peptides derived fro...
A novel 21-residue peptide incorporating six fluorinated amino acids was prepared. It was designed t...
The design, synthesis, modeling and in vitro testing of channel-forming peptides derived from the cy...
To identify sequence‐specific motifs associated with the formation of an ionic pore, we systematical...
AbstractIon channel-forming peptides enable us to study the conformational dynamics of a transmembra...
AbstractIon conduction properties of a de novo synthesized channel, formed from cyclic octa-peptides...
AbstractA molecular dynamics simulation has been performed on a synthetic membrane-spanning ion chan...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
AbstractTransmembrane peptide helices play key roles in signal transduction across cell membranes, y...
A molecular model is proposed for the transmembrane channels formed by alamethicin and related polyp...