AbstractThe recent solution of the crystal structure of the kinesin motor domain reveals striking similarities to the core region of the myosin motor domain, implying a strong evolutionary relationship between these two motors. However, a complete understanding of the way that motility is generated will require additional structural information, which may explain how the two motors have adapted to their fundamentally different linear substrates, F-actin and microtubules
The processive movement of the dimeric motor protein kinesin 1 along microtubules requires communica...
Molecular motors are protein machines whose directed movement along cytoskeletal filaments is driven...
Kinesins are responsible for a wide variety of microtubule-based, ATP-dependent functions. Their mot...
AbstractThe recent solution of the crystal structure of the kinesin motor domain reveals striking si...
Recent studies have shown surprising structural and functional similarities between the motor domain...
AbstractStructure determination of the catalytic domains of two members of the kinesin superfamily r...
We have determined the X-ray structure of rat kinesin head and neck domains. The folding of the core...
International audienceMotile kinesins are motor proteins that move unidirectionally along microtubul...
Several X-ray crystal structures of kinesin motor domains have recently been solved at high resoluti...
An extensive computational analysis of available sequence and crystal structure data was used to ide...
Conventional kinesin (kinesin-1) transports membrane-bounded cargos such as mitochondria and vesicle...
There has been an explosion of interest in molecular motors in the last decade, and it is clear that...
Microtubule-dependent motors of the kinesin family convert the energy from ATP hydrolysis into mecha...
Almost 25 years of kinesin research have led to the accumulation of a large bodyof knowledge about t...
Microtubule-dependent motors of the kinesin family convert the energy from ATP hydrolysis into mecha...
The processive movement of the dimeric motor protein kinesin 1 along microtubules requires communica...
Molecular motors are protein machines whose directed movement along cytoskeletal filaments is driven...
Kinesins are responsible for a wide variety of microtubule-based, ATP-dependent functions. Their mot...
AbstractThe recent solution of the crystal structure of the kinesin motor domain reveals striking si...
Recent studies have shown surprising structural and functional similarities between the motor domain...
AbstractStructure determination of the catalytic domains of two members of the kinesin superfamily r...
We have determined the X-ray structure of rat kinesin head and neck domains. The folding of the core...
International audienceMotile kinesins are motor proteins that move unidirectionally along microtubul...
Several X-ray crystal structures of kinesin motor domains have recently been solved at high resoluti...
An extensive computational analysis of available sequence and crystal structure data was used to ide...
Conventional kinesin (kinesin-1) transports membrane-bounded cargos such as mitochondria and vesicle...
There has been an explosion of interest in molecular motors in the last decade, and it is clear that...
Microtubule-dependent motors of the kinesin family convert the energy from ATP hydrolysis into mecha...
Almost 25 years of kinesin research have led to the accumulation of a large bodyof knowledge about t...
Microtubule-dependent motors of the kinesin family convert the energy from ATP hydrolysis into mecha...
The processive movement of the dimeric motor protein kinesin 1 along microtubules requires communica...
Molecular motors are protein machines whose directed movement along cytoskeletal filaments is driven...
Kinesins are responsible for a wide variety of microtubule-based, ATP-dependent functions. Their mot...