In the in vitro motility assay, actin filaments are propelled by surface-adsorbed myosin motors, or rather, myosin motor fragments such as heavy meromyosin (HMM). Recently, efforts have been made to develop actomyosin powered nanodevices on the basis of this assay but such developments are hampered by limited understanding of the HMM adsorption geometry. Therefore, we here investigate the HMM adsorption geometries on trimethylchlorosilane-[TMCS-] derivatized hydrophobic surfaces and on hydrophilic negatively charged surfaces (SiO2). The TMCS surface is of great relevance in fundamental studies of actomyosin and both surface substrates are important for the development of motor powered nanodevices. Whereas both the TMCS and SiO2 surfaces wer...
Protein molecular motors, which convert chemical energy into kinetic energy, are prime candidates fo...
Heavy meromyosin (HMM), a proteolytically cleaved derivative of myosin has previously been shown to ...
A variety of surface coatings were evaluated for their ability to promote in vitro actomyosin motili...
In the in vitro motility assay, actin filaments are propelled by surface-adsorbed myosin motors, or ...
In the in vitro motility assay, actin filaments are propelled by surface-adsorbed myosin motors, or ...
Understanding how different types of interactions govern adsorption of the myosin motor fragment hea...
The in vitro motility assay is valuable for fundamental studies of actomyosin function and has recen...
We have here, for the first time, used nanofabrication techniques to reproduce aspects of the ordere...
We studied the impact of surface hydrophobicity on the motility of actin filaments moving on heavy-m...
The actin-myosin system, responsible for muscle contraction, is also the force-generating element in...
In many types of biophysical studies of both single molecules and ensembles of molecular motors the ...
We have previously shown that selective heavy meromyosin (HMM) adsorption to predefined regions of n...
Protein molecular motors, which convert, directly and efficiently, chemical energy into motion, are ...
Heavy meromyosin (HMM), a proteolytically cleaved derivative of myosin has previously been shown to ...
Molecular motor-based nanodevices require organized cytoskeletal filament guiding along motility-pro...
Protein molecular motors, which convert chemical energy into kinetic energy, are prime candidates fo...
Heavy meromyosin (HMM), a proteolytically cleaved derivative of myosin has previously been shown to ...
A variety of surface coatings were evaluated for their ability to promote in vitro actomyosin motili...
In the in vitro motility assay, actin filaments are propelled by surface-adsorbed myosin motors, or ...
In the in vitro motility assay, actin filaments are propelled by surface-adsorbed myosin motors, or ...
Understanding how different types of interactions govern adsorption of the myosin motor fragment hea...
The in vitro motility assay is valuable for fundamental studies of actomyosin function and has recen...
We have here, for the first time, used nanofabrication techniques to reproduce aspects of the ordere...
We studied the impact of surface hydrophobicity on the motility of actin filaments moving on heavy-m...
The actin-myosin system, responsible for muscle contraction, is also the force-generating element in...
In many types of biophysical studies of both single molecules and ensembles of molecular motors the ...
We have previously shown that selective heavy meromyosin (HMM) adsorption to predefined regions of n...
Protein molecular motors, which convert, directly and efficiently, chemical energy into motion, are ...
Heavy meromyosin (HMM), a proteolytically cleaved derivative of myosin has previously been shown to ...
Molecular motor-based nanodevices require organized cytoskeletal filament guiding along motility-pro...
Protein molecular motors, which convert chemical energy into kinetic energy, are prime candidates fo...
Heavy meromyosin (HMM), a proteolytically cleaved derivative of myosin has previously been shown to ...
A variety of surface coatings were evaluated for their ability to promote in vitro actomyosin motili...