SummaryPackaging of genetic material inside a capsid is one of the major processes in the lifecycle of bacteriophages. To establish the basic principles of packing double-stranded DNA into a phage, we present a low-resolution model of bacteriophage ϕ29 and report simulations of DNA packaging. The simulations show excellent agreement with available experimental data, including the forces of packaging and the average structures seen in cryo-electron microscopy. The conformation of DNA inside the bacteriophage is primarily determined by the shape of the capsid and the elastic properties of DNA, but the energetics of packaging are dominated by electrostatic repulsions and the large entropic penalty associated with DNA confinement. In this sligh...
AbstractThe conjunction of insights from structural biology, solution biochemistry, genetics, and si...
Strong chain rigidity and electrostatic self-repulsion of packed double-stranded DNA in viruses requ...
AbstractWe use Langevin dynamics simulations to study the process by which a coarse-grained DNA chai...
SummaryPackaging of genetic material inside a capsid is one of the major processes in the lifecycle ...
SummaryThe structure of bacteriophage epsilon15 has recently been determined by 3D reconstruction of...
AbstractSmall, icosahedral double-stranded DNA bacteriophage pack their genomes tightly into preform...
narrangement of DNA inside the capsid, and transformation into a highly condensed, near-crystalline ...
AbstractAn elastic DNA molecular mechanics model is used to compare DNA structures and packing therm...
Genetic and physiological studies of dsDNA bacteriophages have established their assembly pathways i...
AbstractIn a previous communication (Kindt et al., 2001) we reported preliminary results of Brownian...
SummaryThe structure of bacteriophage epsilon15 has recently been determined by 3D reconstruction of...
The structure of bacteriophage epsilon15 has recently been determined by 3D reconstruction of single...
AbstractSmall, icosahedral double-stranded DNA bacteriophage pack their genomes tightly into preform...
AbstractAn elastic DNA molecular mechanics model is used to compare DNA structures and packing therm...
Abstract. A method is developed to simulate the process of double-stranded (ds) DNA packing in viral...
AbstractThe conjunction of insights from structural biology, solution biochemistry, genetics, and si...
Strong chain rigidity and electrostatic self-repulsion of packed double-stranded DNA in viruses requ...
AbstractWe use Langevin dynamics simulations to study the process by which a coarse-grained DNA chai...
SummaryPackaging of genetic material inside a capsid is one of the major processes in the lifecycle ...
SummaryThe structure of bacteriophage epsilon15 has recently been determined by 3D reconstruction of...
AbstractSmall, icosahedral double-stranded DNA bacteriophage pack their genomes tightly into preform...
narrangement of DNA inside the capsid, and transformation into a highly condensed, near-crystalline ...
AbstractAn elastic DNA molecular mechanics model is used to compare DNA structures and packing therm...
Genetic and physiological studies of dsDNA bacteriophages have established their assembly pathways i...
AbstractIn a previous communication (Kindt et al., 2001) we reported preliminary results of Brownian...
SummaryThe structure of bacteriophage epsilon15 has recently been determined by 3D reconstruction of...
The structure of bacteriophage epsilon15 has recently been determined by 3D reconstruction of single...
AbstractSmall, icosahedral double-stranded DNA bacteriophage pack their genomes tightly into preform...
AbstractAn elastic DNA molecular mechanics model is used to compare DNA structures and packing therm...
Abstract. A method is developed to simulate the process of double-stranded (ds) DNA packing in viral...
AbstractThe conjunction of insights from structural biology, solution biochemistry, genetics, and si...
Strong chain rigidity and electrostatic self-repulsion of packed double-stranded DNA in viruses requ...
AbstractWe use Langevin dynamics simulations to study the process by which a coarse-grained DNA chai...