We have developed an optical trapping method to precisely measure the force generated by motor proteins on single organelles of unknown size in cell extract. This approach, termed VMatch, permits the functional interrogation of native motor complexes. We apply VMatch to measure the force, number and activity of kinesin-1 on motile lipid droplets isolated from the liver of normally fed and food-deprived rats
Using optical tweezers and a novel detection technique (a quadrant photodiode at the back focal plan...
textThe cell relies on molecular motor proteins for long range transport of vesicles and organelles ...
AbstractThe use of optical trapping to create extremely compliant mechanical probes has ushered in a...
We have developed an optical trapping method to precisely measure the force generated by motor prote...
Optical trap force measurements give a precise readout of how motor proteins function against a cali...
Numerous microtubule-associated molecular motors, including several kinesins and cytoplasmic dynein,...
Intracellular transport along microtubules is a process critical to cell health, andone whose breakd...
In vitro motility assays enabled the analysis of coupling between ATP hydrolysis and movement of myo...
AbstractMolecular motor proteins use the energy released from ATP hydrolysis to generate force and h...
ABSTRACT We constructed a next-generation optical trapping instrument to study the motility of singl...
1 Introduction to optical trapping In the last few decades, novel microscopy techniques have been de...
ii Cytoskeletal motors like kinesin-1 and dynein are necessary for intracellular transport and a var...
AbstractWe constructed a next-generation optical trapping instrument to study the motility of single...
ABSTRACT To elucidate the mechanism of force generation by actomyosin motor, a measuring system was ...
The past year has brought remarkable advances in instru-mentation, making it possible to measure the...
Using optical tweezers and a novel detection technique (a quadrant photodiode at the back focal plan...
textThe cell relies on molecular motor proteins for long range transport of vesicles and organelles ...
AbstractThe use of optical trapping to create extremely compliant mechanical probes has ushered in a...
We have developed an optical trapping method to precisely measure the force generated by motor prote...
Optical trap force measurements give a precise readout of how motor proteins function against a cali...
Numerous microtubule-associated molecular motors, including several kinesins and cytoplasmic dynein,...
Intracellular transport along microtubules is a process critical to cell health, andone whose breakd...
In vitro motility assays enabled the analysis of coupling between ATP hydrolysis and movement of myo...
AbstractMolecular motor proteins use the energy released from ATP hydrolysis to generate force and h...
ABSTRACT We constructed a next-generation optical trapping instrument to study the motility of singl...
1 Introduction to optical trapping In the last few decades, novel microscopy techniques have been de...
ii Cytoskeletal motors like kinesin-1 and dynein are necessary for intracellular transport and a var...
AbstractWe constructed a next-generation optical trapping instrument to study the motility of single...
ABSTRACT To elucidate the mechanism of force generation by actomyosin motor, a measuring system was ...
The past year has brought remarkable advances in instru-mentation, making it possible to measure the...
Using optical tweezers and a novel detection technique (a quadrant photodiode at the back focal plan...
textThe cell relies on molecular motor proteins for long range transport of vesicles and organelles ...
AbstractThe use of optical trapping to create extremely compliant mechanical probes has ushered in a...