The assumption of linear response of protein molecules to thermal noise or structural perturbations, such as ligand binding or detachment, is broadly used in the studies of protein dynamics. Conformational motions in proteins are traditionally analyzed in terms of normal modes and experimental data on thermal fluctuations in such macromolecules is also usually interpreted in terms of the excitation of normal modes. We have chosen two important protein motors - myosin V and kinesin KIF1A - and performed numerical investigations of their conformational relaxation properties within the coarse-grained elastic network approximation. We have found that the linearity assumption is deficient for ligand-induced conformational motions and can even be...
Due to their small size molecular systems are often overdamped and they are affected by significant ...
A stochastic model for the action of motor proteins such as kinesin is presented. The mechanical com...
Motor proteins produce directional movement and mechanical output in cells by converting chemical en...
The assumption of linear response of protein molecules to thermal noise or structural perturbations,...
The assumption of linear response of protein molecules to thermal noise or structural perturbations,...
AbstractStructure-based elastic network models (ENMs) have been remarkably successful in describing ...
The intrinsic dynamics of proteins can be used to analyze the thermal fluctuations, functional modes...
The intrinsic dynamics of proteins can be used to analyze the thermal fluctuations, functional modes...
A stochastic model for the action of motor proteins such as kinesin is presented. The mechanical com...
The effect of myosin motor protein activity on the filamentous actin (F-actin) rheological response ...
Protein dynamics has been investigated since almost half a century, as it is believed to constitute ...
AbstractBased on the elastic network model, we develop a new analysis for protein complexes, which p...
AbstractDespite significant fluctuation under thermal noise, biological machines in cells perform th...
Motor proteins are active biological molecules that perform their functions by converting chemical e...
A rigorous numerical test of a hypothetical mechanism of a molecular motor should model explicitly t...
Due to their small size molecular systems are often overdamped and they are affected by significant ...
A stochastic model for the action of motor proteins such as kinesin is presented. The mechanical com...
Motor proteins produce directional movement and mechanical output in cells by converting chemical en...
The assumption of linear response of protein molecules to thermal noise or structural perturbations,...
The assumption of linear response of protein molecules to thermal noise or structural perturbations,...
AbstractStructure-based elastic network models (ENMs) have been remarkably successful in describing ...
The intrinsic dynamics of proteins can be used to analyze the thermal fluctuations, functional modes...
The intrinsic dynamics of proteins can be used to analyze the thermal fluctuations, functional modes...
A stochastic model for the action of motor proteins such as kinesin is presented. The mechanical com...
The effect of myosin motor protein activity on the filamentous actin (F-actin) rheological response ...
Protein dynamics has been investigated since almost half a century, as it is believed to constitute ...
AbstractBased on the elastic network model, we develop a new analysis for protein complexes, which p...
AbstractDespite significant fluctuation under thermal noise, biological machines in cells perform th...
Motor proteins are active biological molecules that perform their functions by converting chemical e...
A rigorous numerical test of a hypothetical mechanism of a molecular motor should model explicitly t...
Due to their small size molecular systems are often overdamped and they are affected by significant ...
A stochastic model for the action of motor proteins such as kinesin is presented. The mechanical com...
Motor proteins produce directional movement and mechanical output in cells by converting chemical en...