AbstractThe motor head of kinesin carries out microtubule binding, ATP hydrolysis, and force generation. Despite a high level of sequence and structural conservation, subtle variations in subdomains of the motor head determine family-specific properties. In particular, both Kinesin-1 (Kin-1) and Kinesin-5 (Kin-5) walk processively to the microtubule plus-end, yet show distinct motility characteristics suitable for their functions. We studied chimeric Kin-1/Kin-5 constructs with a combination of single molecule motility assays and molecular dynamics simulations to demonstrate that Kin-5 possesses a force-generating element similar to Kin-1, i.e., the cover-neck bundle. Furthermore, the Kin-5 neck linker makes additional contacts with the cor...
Kinesin motors hydrolyze ATP to produce force and move along microtubules, converting chemical energ...
AbstractConventional kinesin is a two-headed homodimeric motor protein, which is able to walk along ...
AbstractA two-headed structure has been widely believed to be essential for the kinesin molecular mo...
AbstractThe motor head of kinesin carries out microtubule binding, ATP hydrolysis, and force generat...
SummaryIn kinesin motors, a fundamental question concerns the mechanism by which ATP binding generat...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Cataloge...
AbstractKinesin superfamily members play important roles in many diverse cellular processes, includi...
Eukaryotic cells contain a cytoskeleton that forms the structural framework for fundamental cellular...
AbstractStructure determination of the catalytic domains of two members of the kinesin superfamily r...
Kinesins are microtubule motors that use the energy derived from the hydrolysis of ATP to move unidi...
AbstractConventional kinesin is a dimeric motor protein that transports membranous organelles toward...
AbstractA recent model suggests that the walking action of kinesin is due to a 13 residue ‘fundament...
AbstractIntracellular cargo transport frequently involves multiple motor types, either having opposi...
AbstractConventional kinesins are two-headed molecular motors that move as single molecules micromet...
AbstractKinesin is a molecular walking machine with two identical motor heads connected to a coiled-...
Kinesin motors hydrolyze ATP to produce force and move along microtubules, converting chemical energ...
AbstractConventional kinesin is a two-headed homodimeric motor protein, which is able to walk along ...
AbstractA two-headed structure has been widely believed to be essential for the kinesin molecular mo...
AbstractThe motor head of kinesin carries out microtubule binding, ATP hydrolysis, and force generat...
SummaryIn kinesin motors, a fundamental question concerns the mechanism by which ATP binding generat...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Cataloge...
AbstractKinesin superfamily members play important roles in many diverse cellular processes, includi...
Eukaryotic cells contain a cytoskeleton that forms the structural framework for fundamental cellular...
AbstractStructure determination of the catalytic domains of two members of the kinesin superfamily r...
Kinesins are microtubule motors that use the energy derived from the hydrolysis of ATP to move unidi...
AbstractConventional kinesin is a dimeric motor protein that transports membranous organelles toward...
AbstractA recent model suggests that the walking action of kinesin is due to a 13 residue ‘fundament...
AbstractIntracellular cargo transport frequently involves multiple motor types, either having opposi...
AbstractConventional kinesins are two-headed molecular motors that move as single molecules micromet...
AbstractKinesin is a molecular walking machine with two identical motor heads connected to a coiled-...
Kinesin motors hydrolyze ATP to produce force and move along microtubules, converting chemical energ...
AbstractConventional kinesin is a two-headed homodimeric motor protein, which is able to walk along ...
AbstractA two-headed structure has been widely believed to be essential for the kinesin molecular mo...