Cytoskeletal motors transform chemical energy into mechanical work to drive essential cellular functions. Optical trapping experiments have provided crucial insights into the operation of these molecular machines under load. However, the throughput of such force spectroscopy experiments is typically limited to one measurement at a time. Here, a highly-parallel, microfluidics-based method that allows for rapid collection of force-dependent motility parameters of cytoskeletal motors with two orders of magnitude improvement in throughput compared to currently available methods is introduced. Tunable hydrodynamic forces to stepping kinesin-1 motors via DNA-tethered beads and utilize a large field of view to simultaneously track the velocities, ...
Processive cytoskeletal motors from the myosin, kinesin, and dynein families walk on actin filaments...
Microtubules are dynamic cytoskeletal filaments that can generate forces when polymerizing and depol...
Single-molecule force-spectroscopy methods such as magnetic and optical tweezers have emerged as pow...
Cytoskeletal motors transform chemical energy into mechanical work to drive essential cellular funct...
A cargo encounters many obstacles during its transport by molecular motors as it moves throughout th...
Numerous microtubule-associated molecular motors, including several kinesins and cytoplasmic dynein,...
AbstractPrecise manipulation of single molecules has already led to remarkable insights in physics, ...
ABSTRACT We constructed a next-generation optical trapping instrument to study the motility of singl...
Single-molecule force spectroscopy has brought many new insights into nanoscale biology, from the fu...
AbstractWe constructed a next-generation optical trapping instrument to study the motility of single...
Molecular motors, such as myosin and kinesin, perform diverse tasks ranging from vesical transport t...
AbstractProcessive cytoskeletal motors from the myosin, kinesin, and dynein families walk on actin f...
Single molecule fluorescence imaging is a powerful tool for studying protein dynamics. I have levera...
Several techniques have been established to quantify the mechanicals of single molecules. However, m...
We have analyzed the mechanics of individual kinesin molecules by optical trapping nanometry. A kine...
Processive cytoskeletal motors from the myosin, kinesin, and dynein families walk on actin filaments...
Microtubules are dynamic cytoskeletal filaments that can generate forces when polymerizing and depol...
Single-molecule force-spectroscopy methods such as magnetic and optical tweezers have emerged as pow...
Cytoskeletal motors transform chemical energy into mechanical work to drive essential cellular funct...
A cargo encounters many obstacles during its transport by molecular motors as it moves throughout th...
Numerous microtubule-associated molecular motors, including several kinesins and cytoplasmic dynein,...
AbstractPrecise manipulation of single molecules has already led to remarkable insights in physics, ...
ABSTRACT We constructed a next-generation optical trapping instrument to study the motility of singl...
Single-molecule force spectroscopy has brought many new insights into nanoscale biology, from the fu...
AbstractWe constructed a next-generation optical trapping instrument to study the motility of single...
Molecular motors, such as myosin and kinesin, perform diverse tasks ranging from vesical transport t...
AbstractProcessive cytoskeletal motors from the myosin, kinesin, and dynein families walk on actin f...
Single molecule fluorescence imaging is a powerful tool for studying protein dynamics. I have levera...
Several techniques have been established to quantify the mechanicals of single molecules. However, m...
We have analyzed the mechanics of individual kinesin molecules by optical trapping nanometry. A kine...
Processive cytoskeletal motors from the myosin, kinesin, and dynein families walk on actin filaments...
Microtubules are dynamic cytoskeletal filaments that can generate forces when polymerizing and depol...
Single-molecule force-spectroscopy methods such as magnetic and optical tweezers have emerged as pow...