The interface between relay and converter domain of muscle myosin is critical for optimal myosin performance. Using Drosophila melanogaster indirect flight muscle S1 we performed a kinetic analysis of the effect of mutations in the converter and relay domain. Introduction of a mutation (R759E) in the converter domain inhibits the steady-state ATPase of myosin S1, whereas an additional mutation in the relay domain (N509K) is able to restore the ATPase towards wild-type values. The S1-R759E construct showed little effect on most steps of the actomyosin ATPase cycle. The exception was a 25-30% reduction in the rate constant of the hydrolysis step, the step coupled to the cross-bridge recovery stroke and involving a change in conformation at th...
Mutations of myosin VIIA cause deafness in various species from human and mice to Zebrafish and Dros...
We have separately expressed the Dictyosteliumdiscoideum myosin II nonhydrolyzer point mutations E45...
AbstractThe myosin motor protein generates force in muscle by hydrolyzing Adenosine 5′-triphosphate ...
AbstractWe are investigating the influence of the converter and relay domains on elementary rate con...
AbstractWe are investigating the influence of the converter and relay domains on elementary rate con...
AbstractStructural interactions between the myosin converter and relay domains have been proposed to...
We investigated the biochemical and biophysical properties of one of the four alternative exon-encod...
performed transient kinetic analyses to characterize the ATPase cycles of the mutant proteins. While...
We investigated the biochemical and biophysical properties of one of the four alternative exon-encod...
AbstractWe measured the influence of alternative versions of the Drosophila melanogaster myosin heav...
After ATP binding the myosin head undergoes a large structural rearrangement called the recovery str...
The potential to explore myosin function through the alternative exons and mutations of the single m...
AbstractWe examined the importance of alternative versions of a region near the ATP binding site of ...
<div><p>The motor domain of myosin is the core element performing mechanochemical energy transductio...
SummaryBefore the myosin motor head can perform the next power stroke, it undergoes a large conforma...
Mutations of myosin VIIA cause deafness in various species from human and mice to Zebrafish and Dros...
We have separately expressed the Dictyosteliumdiscoideum myosin II nonhydrolyzer point mutations E45...
AbstractThe myosin motor protein generates force in muscle by hydrolyzing Adenosine 5′-triphosphate ...
AbstractWe are investigating the influence of the converter and relay domains on elementary rate con...
AbstractWe are investigating the influence of the converter and relay domains on elementary rate con...
AbstractStructural interactions between the myosin converter and relay domains have been proposed to...
We investigated the biochemical and biophysical properties of one of the four alternative exon-encod...
performed transient kinetic analyses to characterize the ATPase cycles of the mutant proteins. While...
We investigated the biochemical and biophysical properties of one of the four alternative exon-encod...
AbstractWe measured the influence of alternative versions of the Drosophila melanogaster myosin heav...
After ATP binding the myosin head undergoes a large structural rearrangement called the recovery str...
The potential to explore myosin function through the alternative exons and mutations of the single m...
AbstractWe examined the importance of alternative versions of a region near the ATP binding site of ...
<div><p>The motor domain of myosin is the core element performing mechanochemical energy transductio...
SummaryBefore the myosin motor head can perform the next power stroke, it undergoes a large conforma...
Mutations of myosin VIIA cause deafness in various species from human and mice to Zebrafish and Dros...
We have separately expressed the Dictyosteliumdiscoideum myosin II nonhydrolyzer point mutations E45...
AbstractThe myosin motor protein generates force in muscle by hydrolyzing Adenosine 5′-triphosphate ...