AbstractWe assessed the influence of alternative versions of a region near the N-terminus of Drosophila myosin heavy chain on muscle mechanical properties. Previously, we exchanged N-terminal regions (encoded by alternative exon 3s) between an embryonic (EMB) isoform and the indirect flight muscle isoform (IFI) of myosin, and demonstrated that it influences solution ATPase rates and in vitro actin sliding velocity. Because each myosin is expressed in Drosophila indirect flight muscle, in the absence of other myosin isoforms, this allows for muscle mechanical and whole organism locomotion assays. We found that exchanging the flight muscle specific exon 3 region into the embryonic isoform (EMB-3b) increased maximum power generation (Pmax) and...
AbstractThe subfragment 2/light meromyosin “hinge” region has been proposed to significantly contrib...
AbstractWe are investigating the influence of the converter and relay domains on elementary rate con...
AbstractThe mechanism behind stretch activation (SA), a mechanical property that increases muscle fo...
AbstractWe assessed the influence of alternative versions of a region near the N-terminus of Drosoph...
AbstractWe examined the importance of alternative versions of a region near the ATP binding site of ...
AbstractWe measured the influence of alternative versions of the Drosophila melanogaster myosin heav...
AbstractThe Drosophila myosin regulatory light chain (DMLC2) is homologous to MLC2s of vertebrate or...
The Drosophila myosin regulatory light chain (DMLC2) is homologous to MLC2s of vertebrate organisms,...
ABSTRACT The Drosophila myosin regulatory light chain (DMLC2) is homologous to MLC2s of vertebrate o...
AbstractWe are investigating the influence of the converter and relay domains on elementary rate con...
We investigated the biochemical and biophysical properties of one of the four alternative exon-encod...
AbstractTransgenic Drosophila are highly useful for structure-function studies of muscle proteins. H...
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...
The phosphoprotein paramyosin is a major structural component of invertebrate muscle thick filaments...
AbstractThe subfragment 2/light meromyosin “hinge” region has been proposed to significantly contrib...
AbstractWe are investigating the influence of the converter and relay domains on elementary rate con...
AbstractThe mechanism behind stretch activation (SA), a mechanical property that increases muscle fo...
AbstractWe assessed the influence of alternative versions of a region near the N-terminus of Drosoph...
AbstractWe examined the importance of alternative versions of a region near the ATP binding site of ...
AbstractWe measured the influence of alternative versions of the Drosophila melanogaster myosin heav...
AbstractThe Drosophila myosin regulatory light chain (DMLC2) is homologous to MLC2s of vertebrate or...
The Drosophila myosin regulatory light chain (DMLC2) is homologous to MLC2s of vertebrate organisms,...
ABSTRACT The Drosophila myosin regulatory light chain (DMLC2) is homologous to MLC2s of vertebrate o...
AbstractWe are investigating the influence of the converter and relay domains on elementary rate con...
We investigated the biochemical and biophysical properties of one of the four alternative exon-encod...
AbstractTransgenic Drosophila are highly useful for structure-function studies of muscle proteins. H...
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...
The phosphoprotein paramyosin is a major structural component of invertebrate muscle thick filaments...
AbstractThe subfragment 2/light meromyosin “hinge” region has been proposed to significantly contrib...
AbstractWe are investigating the influence of the converter and relay domains on elementary rate con...
AbstractThe mechanism behind stretch activation (SA), a mechanical property that increases muscle fo...