Phenomena such as protein folding, crystallisation, self-assembly, and the observation of magic number clusters in molecular beams are all the result of non-random searches. Analysis of the underlying potential energy surface may provide a unifying framework to explain how such events occur as the result of a guided exploration of the landscape. In particular, icosahedral shells composed of 12 pentagonal pyramids are found to be thermodynamically favourable and kinetically accessible when the pyramids are not too spiky and not too flat. Hence, viruses with icosahedral capsids not only minimise the genetic material required to encode the repeated subunits, but may also utilise the favourable properties of a potential energy surface that effe...
Self-assembly --- by which ordered structures spontaneously emerge from disordered components --- an...
International audienceThe survival of viruses partly relies on their ability to self-assemble inside...
Icosahedral viruses are under a micrometer in diameter, their infectious genome encapsulated by a sh...
The potential energy surface (PES) underlies most calculations of structure, dynamics and thermodyna...
Understanding how highly symmetric, robust, monodisperse protein nano-cages self-assemblecan have ma...
The protein shells, or capsids, of nearly all spherelike viruses adopt icosahedral symmetry. In the ...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
Small spherical viruses spontaneously encapsidate their genome into protein capsids. The encapsidati...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
The protein shells, or capsids, of nearly all spherelike viruses adopt icosahedral symmetry. In the ...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
Small spherical viruses spontaneously encapsidate their genome into protein capsids. The encapsidati...
International audienceThe survival of viruses partly relies on their ability to self-assemble inside...
Self-assembly --- by which ordered structures spontaneously emerge from disordered components --- an...
International audienceThe survival of viruses partly relies on their ability to self-assemble inside...
Icosahedral viruses are under a micrometer in diameter, their infectious genome encapsulated by a sh...
The potential energy surface (PES) underlies most calculations of structure, dynamics and thermodyna...
Understanding how highly symmetric, robust, monodisperse protein nano-cages self-assemblecan have ma...
The protein shells, or capsids, of nearly all spherelike viruses adopt icosahedral symmetry. In the ...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
Small spherical viruses spontaneously encapsidate their genome into protein capsids. The encapsidati...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
The protein shells, or capsids, of nearly all spherelike viruses adopt icosahedral symmetry. In the ...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
The dense packing of interacting particles on spheres has proved to be a useful model for virus caps...
Small spherical viruses spontaneously encapsidate their genome into protein capsids. The encapsidati...
International audienceThe survival of viruses partly relies on their ability to self-assemble inside...
Self-assembly --- by which ordered structures spontaneously emerge from disordered components --- an...
International audienceThe survival of viruses partly relies on their ability to self-assemble inside...
Icosahedral viruses are under a micrometer in diameter, their infectious genome encapsulated by a sh...