Cytoskeletal filaments are capable of self-assembly in the absence of externally supplied chemical energy, but the rapid turnover rates essential for their biological function require a constant flux of adenosine triphosphate (ATP) or guanosine triphosphate (GTP) hydrolysis. The same is true for two-dimensional protein assemblies employed in the formation of vesicles from cellular membranes, which rely on ATP-hydrolyzing enzymes to rapidly disassemble upon completion of the process. Recent observations suggest that the nucleolus, p granules, and other three-dimensional membraneless organelles may also demand dissipation of chemical energy to maintain their fluidity. Cooperative binding plays a crucial role in the dynamics of these higher-di...
AbstractWe study the stochastic dynamics of growth and shrinkage of single actin filaments or microt...
We have studied assembly of chromatin using Xenopus egg extracts and single DNA molecules held at co...
Microtubules are self-assembling polymers whose dynamics are essential for the normal function of ce...
Dissipative self-assembly is exploited by nature to control important biological functions, such as ...
The cytoskeleton (CSK) is a nonequilibrium polymer network that uses hydrolyzable sources of free en...
Transient assembled structures play an indispensable role in a wide variety of processes fundamental...
Out-of-equilibrium self-assembly of proteins such as actin and tubulin is a key regulatory process c...
The physical sciences have played a pre-eminent role in the advance of biology not only by providing...
Collective dynamics and force generation by cytoskeletal filaments are crucial in many cellular proc...
International audienceWe study the stochastic dynamics of growth and shrinkage of single actin filam...
Protein molecules and functionalized nanoparticles often self-assemble by means of non-covalent phys...
Supramolecular architectures that work out-of-equilibrium or that can change in specific ways when a...
ABSTRACT We study the stochastic dynamics of growth and shrinkage of single actin filaments or micro...
ABSTRACT Recent modeling efforts to estimate energies of tubulin-tubulin bonds shed light on a delic...
Supramolecular architectures that work out-of-equilibrium or that can change in specific ways when a...
AbstractWe study the stochastic dynamics of growth and shrinkage of single actin filaments or microt...
We have studied assembly of chromatin using Xenopus egg extracts and single DNA molecules held at co...
Microtubules are self-assembling polymers whose dynamics are essential for the normal function of ce...
Dissipative self-assembly is exploited by nature to control important biological functions, such as ...
The cytoskeleton (CSK) is a nonequilibrium polymer network that uses hydrolyzable sources of free en...
Transient assembled structures play an indispensable role in a wide variety of processes fundamental...
Out-of-equilibrium self-assembly of proteins such as actin and tubulin is a key regulatory process c...
The physical sciences have played a pre-eminent role in the advance of biology not only by providing...
Collective dynamics and force generation by cytoskeletal filaments are crucial in many cellular proc...
International audienceWe study the stochastic dynamics of growth and shrinkage of single actin filam...
Protein molecules and functionalized nanoparticles often self-assemble by means of non-covalent phys...
Supramolecular architectures that work out-of-equilibrium or that can change in specific ways when a...
ABSTRACT We study the stochastic dynamics of growth and shrinkage of single actin filaments or micro...
ABSTRACT Recent modeling efforts to estimate energies of tubulin-tubulin bonds shed light on a delic...
Supramolecular architectures that work out-of-equilibrium or that can change in specific ways when a...
AbstractWe study the stochastic dynamics of growth and shrinkage of single actin filaments or microt...
We have studied assembly of chromatin using Xenopus egg extracts and single DNA molecules held at co...
Microtubules are self-assembling polymers whose dynamics are essential for the normal function of ce...