AbstractThe conjunction of insights from structural biology, solution biochemistry, genetics, and single-molecule biophysics has provided a renewed impetus for the construction of quantitative models of biological processes. One area that has been a beneficiary of these experimental techniques is the study of viruses. In this article we describe how the insights obtained from such experiments can be utilized to construct physical models of processes in the viral life cycle. We focus on dsDNA bacteriophages and show that the bending elasticity of DNA and its electrostatics in solution can be combined to determine the forces experienced during packaging and ejection of the viral genome. Furthermore, we quantitatively analyze the effect of flu...
A variety of viruses tightly pack their genetic material into protein capsids that are barely large ...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...
AbstractThe conjunction of insights from structural biology, solution biochemistry, genetics, and si...
A new generation of single-molecule experiments has opened up the possibility of reexamining many of...
SummaryPackaging of genetic material inside a capsid is one of the major processes in the lifecycle ...
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 ...
Genetic and physiological studies of dsDNA bacteriophage have established their assembly pathways in...
AbstractIn a previous communication (Kindt et al., 2001) we reported preliminary results of Brownian...
AbstractA variety of viruses tightly pack their genetic material into protein capsids that are barel...
Genetic and physiological studies of dsDNA bacteriophages have established their assembly pathways i...
International audienceWe present in this work in vitro measurements of the force ejecting DNA from t...
International audienceWe present in this work in vitro measurements of the force ejecting DNA from t...
International audienceWe present in this work in vitro measurements of the force ejecting DNA from t...
A variety of viruses tightly pack their genetic material into protein capsids that are barely large ...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...
AbstractThe conjunction of insights from structural biology, solution biochemistry, genetics, and si...
A new generation of single-molecule experiments has opened up the possibility of reexamining many of...
SummaryPackaging of genetic material inside a capsid is one of the major processes in the lifecycle ...
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 ...
Genetic and physiological studies of dsDNA bacteriophage have established their assembly pathways in...
AbstractIn a previous communication (Kindt et al., 2001) we reported preliminary results of Brownian...
AbstractA variety of viruses tightly pack their genetic material into protein capsids that are barel...
Genetic and physiological studies of dsDNA bacteriophages have established their assembly pathways i...
International audienceWe present in this work in vitro measurements of the force ejecting DNA from t...
International audienceWe present in this work in vitro measurements of the force ejecting DNA from t...
International audienceWe present in this work in vitro measurements of the force ejecting DNA from t...
A variety of viruses tightly pack their genetic material into protein capsids that are barely large ...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...