AbstractWe used classical molecular mechanics (MM) simulations and quantum mechanical (QM) structural relaxations to examine the active site of myosin when bound to ATP. Two conformations of myosin have been determined by x-ray crystallography. In one, there is no direct interaction between switch 2 and the nucleotide (open state). In the other (closed state), the universally conserved switch 2 glycine forms a hydrogen bond with a γ-phosphate oxygen. MM simulations indicate that the two states are thermodynamically stable and allow us to investigate the extent to which the P-loop, switch 1, and switch 2 are involved in hydrolysis. We find that the open structure has a higher affinity for ATP than the closed structure, and that ATP is distor...
The active site of myosin contains a group of highly conserved amino acid residues whose roles in nu...
Although the major structural transitions in molecular motors are often argued to couple to the bind...
Although the major structural transitions in molecular motors are often argued to couple to the bind...
AbstractWe used classical molecular mechanics (MM) simulations and quantum mechanical (QM) structura...
AbstractThe ATP hydrolysis mechanism of myosin was studied using quantum chemical (QM) and molecular...
AbstractThe ATP hydrolysis mechanism of myosin was studied using quantum chemical (QM) and molecular...
Molecular motors are proteins that convert energy from nucleoside triphosphate hydrolysis into mecha...
To elucidate the detailed mechanism of ATP hydrolysis in myosin, molecular dynamics employing classi...
Conventional myosin is representative of biomolecular motors in which the hydrolysis of adenosine tr...
AbstractThe switch 1 region of myosin forms a lid over the nucleotide phosphates as part of a struct...
Myosin motor function depends on the interaction between different domains that transmit information...
AbstractA wide variety of purine- and pyrimidine-based nucleotides can serve as a substrate for acto...
Skeletal muscle myosin is an enzyme that interacts allosterically with MgATP and actin to transduce ...
AbstractConserved active-site elements in myosins and other P-loop NTPases play critical roles in nu...
Myosin active site elements (i.e., switch-1) bind both ATP and a divalent metal to coordinate ATP hy...
The active site of myosin contains a group of highly conserved amino acid residues whose roles in nu...
Although the major structural transitions in molecular motors are often argued to couple to the bind...
Although the major structural transitions in molecular motors are often argued to couple to the bind...
AbstractWe used classical molecular mechanics (MM) simulations and quantum mechanical (QM) structura...
AbstractThe ATP hydrolysis mechanism of myosin was studied using quantum chemical (QM) and molecular...
AbstractThe ATP hydrolysis mechanism of myosin was studied using quantum chemical (QM) and molecular...
Molecular motors are proteins that convert energy from nucleoside triphosphate hydrolysis into mecha...
To elucidate the detailed mechanism of ATP hydrolysis in myosin, molecular dynamics employing classi...
Conventional myosin is representative of biomolecular motors in which the hydrolysis of adenosine tr...
AbstractThe switch 1 region of myosin forms a lid over the nucleotide phosphates as part of a struct...
Myosin motor function depends on the interaction between different domains that transmit information...
AbstractA wide variety of purine- and pyrimidine-based nucleotides can serve as a substrate for acto...
Skeletal muscle myosin is an enzyme that interacts allosterically with MgATP and actin to transduce ...
AbstractConserved active-site elements in myosins and other P-loop NTPases play critical roles in nu...
Myosin active site elements (i.e., switch-1) bind both ATP and a divalent metal to coordinate ATP hy...
The active site of myosin contains a group of highly conserved amino acid residues whose roles in nu...
Although the major structural transitions in molecular motors are often argued to couple to the bind...
Although the major structural transitions in molecular motors are often argued to couple to the bind...