Potential of mean force (PMF) profiles of a single Na+ or K+ ion passing through a cyclic peptide nanotube, cyclo[-(D-Ala-Glu-D-Ala-Gln)2-], in water are calculated to provide insight into ion transport and to understand the conductance difference between these two ions. The PMF profiles are obtained by performing steered molecular dynamics (SMD) simulations that are based on the Jarzynski equality. The computed PMF profiles for both ions show barriers of around 2.4 kcal/mol at the channel entrances and exits and energy wells in the middle of the tube. The energy barriers, so-called dielectric energy barriers, arise due to the desolvation of water molecules when ions move across the nanotube, and the energy wells appear as a result of attra...
Narrow hydrophobic regions are a common feature of biological channels, with possible roles in ion-c...
Cyclic peptide nanotubes occur during the selfassembly process of cyclic peptides. Due to the ease o...
Carbon nanotubes are building blocks of the fast-developing nanotechnology that leads to revolutiona...
Ion selectivity in a simple cyclic peptide nanotube, composed of four cyclo[-(D-Ala-Glu-D-Ala-Gln)2-...
Potential of mean force (PMF) profiles and position-dependent diffusion coefficients of Na<sup>+</su...
Recently, organic nanostructures have attracted much attention, and amongst them peptide nanotubes a...
Molecular dynamics simulations have been performed to investigate the transport properties of a sing...
AbstractContinuum and atomistic descriptions of the partitioning of ions into a self-assembled (d,l)...
We present here a molecular dynamics study on a promising class of peptide nanotubes with a partiall...
The structural stability and transport properties of the cyclic peptide nanotube (CPN) 8 × [Cys–Gly–...
We investigate the van der Waals interaction of D,L-Ala cyclopeptide nanotubes and various ions, ion...
Recently reported synthetic organic nanopore (SONP) can mimic a key feature of natural ion channels,...
We use atomistic nonequilibrium molecular dynamics simulations to demonstrate how specific ionic flu...
In this dissertation, we investigate water and ion transport through carbon nanotubes using molecul...
AbstractNanotubes resulting from the self-assembly of cyclic peptides formed by eight α-amino acids ...
Narrow hydrophobic regions are a common feature of biological channels, with possible roles in ion-c...
Cyclic peptide nanotubes occur during the selfassembly process of cyclic peptides. Due to the ease o...
Carbon nanotubes are building blocks of the fast-developing nanotechnology that leads to revolutiona...
Ion selectivity in a simple cyclic peptide nanotube, composed of four cyclo[-(D-Ala-Glu-D-Ala-Gln)2-...
Potential of mean force (PMF) profiles and position-dependent diffusion coefficients of Na<sup>+</su...
Recently, organic nanostructures have attracted much attention, and amongst them peptide nanotubes a...
Molecular dynamics simulations have been performed to investigate the transport properties of a sing...
AbstractContinuum and atomistic descriptions of the partitioning of ions into a self-assembled (d,l)...
We present here a molecular dynamics study on a promising class of peptide nanotubes with a partiall...
The structural stability and transport properties of the cyclic peptide nanotube (CPN) 8 × [Cys–Gly–...
We investigate the van der Waals interaction of D,L-Ala cyclopeptide nanotubes and various ions, ion...
Recently reported synthetic organic nanopore (SONP) can mimic a key feature of natural ion channels,...
We use atomistic nonequilibrium molecular dynamics simulations to demonstrate how specific ionic flu...
In this dissertation, we investigate water and ion transport through carbon nanotubes using molecul...
AbstractNanotubes resulting from the self-assembly of cyclic peptides formed by eight α-amino acids ...
Narrow hydrophobic regions are a common feature of biological channels, with possible roles in ion-c...
Cyclic peptide nanotubes occur during the selfassembly process of cyclic peptides. Due to the ease o...
Carbon nanotubes are building blocks of the fast-developing nanotechnology that leads to revolutiona...