Kinesin motors hydrolyze ATP to produce force and do work in the cell – how the motors do this is not fully understood, but is thought to depend on the coupling of ATP hydrolysis to microtubule binding by the motor. Transmittal of conformational changes from the microtubule- to the nucleotide-binding site has been proposed to involve the central b-sheet, which could undergo large structural changes important for force production. We show here that mutation of an invariant residue in loop L7 of the central b-sheet of the Drosophila kinesin-14 Ncd motor alters both nucleotide and microtubule binding, although the mutated residue is not present in either site. Mutants show weak-ADP/tight-microtubule binding, instead of tight-ADP/weak-microtubu...
AbstractKinesins are microtubule-dependent motors that serve a multitude of cellular purposes. The c...
Kinesin-4 motors play important roles in cell division, microtubule organization, and signaling. Und...
The ability to predict the cellular dynamics of intracellular transport has enormous potential to im...
Kinesin motors hydrolyze ATP to produce force and do work in the cell--how the motors do this is not...
<div><p>Kinesin motors hydrolyze ATP to produce force and do work in the cell – how the motors do th...
Kinesin motors hydrolyze ATP to produce force and move along microtubules, converting chemical energ...
The movement of a molecular motor protein along a cytoskeletal track requires communication between ...
Microtubule-dependent motors of the kinesin family convert the energy from ATP hydrolysis into mecha...
Microtubule-dependent motors of the kinesin family convert the energy from ATP hydrolysis into mecha...
Kinesins and myosins hydrolyze ATP, producing force that drives spindle assembly, vesicle transport ...
ABSTRACT: Conventional kinesin is a microtubule-based motor protein that is an important model syste...
AbstractNcd, a member of kinesin-14 family motors, uses the power stroke, a lever-like pivoting acti...
Motor proteins are active enzymatic molecules that support important cellular processes by transform...
AbstractThe structure of an ATP-bound kinesin motor domain is predicted and conformational differenc...
Kinesin-1 is a molecular motor that transports cellular cargo along microtubules by completing hundr...
AbstractKinesins are microtubule-dependent motors that serve a multitude of cellular purposes. The c...
Kinesin-4 motors play important roles in cell division, microtubule organization, and signaling. Und...
The ability to predict the cellular dynamics of intracellular transport has enormous potential to im...
Kinesin motors hydrolyze ATP to produce force and do work in the cell--how the motors do this is not...
<div><p>Kinesin motors hydrolyze ATP to produce force and do work in the cell – how the motors do th...
Kinesin motors hydrolyze ATP to produce force and move along microtubules, converting chemical energ...
The movement of a molecular motor protein along a cytoskeletal track requires communication between ...
Microtubule-dependent motors of the kinesin family convert the energy from ATP hydrolysis into mecha...
Microtubule-dependent motors of the kinesin family convert the energy from ATP hydrolysis into mecha...
Kinesins and myosins hydrolyze ATP, producing force that drives spindle assembly, vesicle transport ...
ABSTRACT: Conventional kinesin is a microtubule-based motor protein that is an important model syste...
AbstractNcd, a member of kinesin-14 family motors, uses the power stroke, a lever-like pivoting acti...
Motor proteins are active enzymatic molecules that support important cellular processes by transform...
AbstractThe structure of an ATP-bound kinesin motor domain is predicted and conformational differenc...
Kinesin-1 is a molecular motor that transports cellular cargo along microtubules by completing hundr...
AbstractKinesins are microtubule-dependent motors that serve a multitude of cellular purposes. The c...
Kinesin-4 motors play important roles in cell division, microtubule organization, and signaling. Und...
The ability to predict the cellular dynamics of intracellular transport has enormous potential to im...