According to recent experiments, the molecular-motor myosin behaves like a strain sensor, exhibiting different functional responses when loads in opposite directions are applied to its tail. Within an elastic-network model, we explore the sensitivity of the protein to the forces acting on the tail and find, in agreement with experiments, that such forces invoke conformational changes that should affect filament binding and ADP release. Furthermore, conformational responses of myosin to the application of forces to individual residues in its principal functional regions are systematically investigated and a detailed sensitivity map of myosin-V is thus obtained. The results suggest that the strain-sensor behavior is involved in the intrinsic ...
ABSTRACT The movement of the myosin mo-tor along an actin filament involves a directed con-formation...
AbstractMyosin V is a single-molecule motor that moves organelles along actin. When myosin V pulls l...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
AbstractAccording to recent experiments, the molecular-motor myosin behaves like a strain sensor, ex...
According to recent experiments, the molecular-motor myosin behaves like a strain sensor, exhibiting...
<div><p>Systematic numerical investigations of conformational motions in single actin molecules were...
Systematic numerical investigations of conformational motions in single actin molecules were perform...
SummaryMechanosensation is emerging as a general principle of myosin motors. As demonstrated in a re...
Systematic numerical investigations of conformational motions in single actin molecules were perform...
Myosins are actin-activated ATPases that convert the chemical energy stored in ATP into the mechanic...
Myosins are actin-activated ATPases that convert the chemical energy stored in ATP into the mechanic...
SummaryMechanosensation is emerging as a general principle of myosin motors. As demonstrated in a re...
Myosins are actin-activated ATPases that convert the chemical energy stored in ATP into the mechanic...
AbstractStructure-based elastic network models (ENMs) have been remarkably successful in describing ...
International audienceThe movement of the myosin motor along an actin filament involves a directed c...
ABSTRACT The movement of the myosin mo-tor along an actin filament involves a directed con-formation...
AbstractMyosin V is a single-molecule motor that moves organelles along actin. When myosin V pulls l...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...
AbstractAccording to recent experiments, the molecular-motor myosin behaves like a strain sensor, ex...
According to recent experiments, the molecular-motor myosin behaves like a strain sensor, exhibiting...
<div><p>Systematic numerical investigations of conformational motions in single actin molecules were...
Systematic numerical investigations of conformational motions in single actin molecules were perform...
SummaryMechanosensation is emerging as a general principle of myosin motors. As demonstrated in a re...
Systematic numerical investigations of conformational motions in single actin molecules were perform...
Myosins are actin-activated ATPases that convert the chemical energy stored in ATP into the mechanic...
Myosins are actin-activated ATPases that convert the chemical energy stored in ATP into the mechanic...
SummaryMechanosensation is emerging as a general principle of myosin motors. As demonstrated in a re...
Myosins are actin-activated ATPases that convert the chemical energy stored in ATP into the mechanic...
AbstractStructure-based elastic network models (ENMs) have been remarkably successful in describing ...
International audienceThe movement of the myosin motor along an actin filament involves a directed c...
ABSTRACT The movement of the myosin mo-tor along an actin filament involves a directed con-formation...
AbstractMyosin V is a single-molecule motor that moves organelles along actin. When myosin V pulls l...
Cells modulate themselves in response to the surrounding environment like substrate elasticity, exhi...