A cargo encounters many obstacles during its transport by molecular motors as it moves throughout the cell. Multiple motors on the cargo exert forces to steer the cargo to its destination. Measuring these forces is essential for understanding intracellular transport. Using kinesin as an example, we measured the force exerted by multiple stationary kinesins in vitro, driving a common microtubule. We find that individual kinesins generally exert less than a piconewton (pN) of force, even while bypassing obstacles, whether these are artificially placed 20-100 nm particles or tau, a Microtubule Associated Protein. We demonstrate that when a kinesin encounters an obstacle, the kinesin either becomes dislodged or switches protofilaments while the...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
textThe cell relies on molecular motor proteins for long range transport of vesicles and organelles ...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
Single molecule fluorescence imaging is a powerful tool for studying protein dynamics. I have levera...
Eukaryotic cells are intricately organized on many length and time scales, from molecules to organel...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
AbstractIntracellular cargo transport frequently involves multiple motor types, either having opposi...
AbstractMotor proteins of the kinesin family move actively along microtubules to transport cargo wit...
Kinesin-1 (hereafter referred to as kinesin) is a major microtubule-based motor protein for plus-end...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
textThe cell relies on molecular motor proteins for long range transport of vesicles and organelles ...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
Single molecule fluorescence imaging is a powerful tool for studying protein dynamics. I have levera...
Eukaryotic cells are intricately organized on many length and time scales, from molecules to organel...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
Molecular motors' shuttling of cargo along cytoskeletal filaments is essential for many cellular pro...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
AbstractIntracellular cargo transport frequently involves multiple motor types, either having opposi...
AbstractMotor proteins of the kinesin family move actively along microtubules to transport cargo wit...
Kinesin-1 (hereafter referred to as kinesin) is a major microtubule-based motor protein for plus-end...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
textThe cell relies on molecular motor proteins for long range transport of vesicles and organelles ...