Microtubule (MT)-destabilizing kinesin 13s perform fundamental roles throughout the cell cycle. In this study, we show that the Drosophila melanogaster kinesin 13, KLP10A, is phosphorylated in vivo at a conserved serine (S573) positioned within the alpha-helix 5 of the motor domain. In vitro, a phosphomimic KLP10A S573E mutant displays a reduced capacity to depolymerize MTs but normal affinity for the MT lattice. In cells, replacement of endogenous KLP10A with KLP10A S573E dampens MT plus end dynamics throughout the cell cycle, whereas a nonphosphorylatable S573A mutant apparently enhances activity during mitosis. Electron microscopy suggests that KLP10A S573 phosphorylation alters its association with the MT lattice, whereas molecular dyna...
Kinesins and dyneins play important roles during cell division. Using RNA interference (RNAi) to dep...
We have performed a mutational analysis together with RNA interference to determine the role of the ...
SummaryTo elucidate the structural basis of the mechanism of microtubule depolymerization by kinesin...
Kinesin-13s are important effectors of microtubule depolymerization in cells. In a recent series of ...
Regulation of microtubule polymerization and depolymerization is required for proper cell developmen...
Kinesin-13s are microtubule (MT) depolymerases different from most other kinesins that move along MT...
<div><p>Kinesin-13s are microtubule (MT) depolymerases different from most other kinesins that move ...
SummaryKlp10A is a kinesin-13 of Drosophila melanogaster that depolymerizes cytoplasmic microtubules...
Constructing a mitotic spindle requires the coordinated actions of several kinesin motor proteins. H...
SummaryMitotic spindle assembly and maintenance relies on kinesin-5 motors that act as bipolar homot...
Kinesin-13 motors are unusual in that they do not walk along microtubules, but instead diffuse to th...
International audienceKinesin-13 motors regulate precise microtubule dynamics and limit microtubule ...
Kinesin-13 motors regulate precise microtubule dynamics and limit microtubule length throughout meta...
Kinesin-13 motors regulate precise microtubule dynamics and limit microtubule length throughout meta...
Mitotic Centromere Associated Kinesin (MCAK) is a microtubule depolymerase from the Kinesin-13 famil...
Kinesins and dyneins play important roles during cell division. Using RNA interference (RNAi) to dep...
We have performed a mutational analysis together with RNA interference to determine the role of the ...
SummaryTo elucidate the structural basis of the mechanism of microtubule depolymerization by kinesin...
Kinesin-13s are important effectors of microtubule depolymerization in cells. In a recent series of ...
Regulation of microtubule polymerization and depolymerization is required for proper cell developmen...
Kinesin-13s are microtubule (MT) depolymerases different from most other kinesins that move along MT...
<div><p>Kinesin-13s are microtubule (MT) depolymerases different from most other kinesins that move ...
SummaryKlp10A is a kinesin-13 of Drosophila melanogaster that depolymerizes cytoplasmic microtubules...
Constructing a mitotic spindle requires the coordinated actions of several kinesin motor proteins. H...
SummaryMitotic spindle assembly and maintenance relies on kinesin-5 motors that act as bipolar homot...
Kinesin-13 motors are unusual in that they do not walk along microtubules, but instead diffuse to th...
International audienceKinesin-13 motors regulate precise microtubule dynamics and limit microtubule ...
Kinesin-13 motors regulate precise microtubule dynamics and limit microtubule length throughout meta...
Kinesin-13 motors regulate precise microtubule dynamics and limit microtubule length throughout meta...
Mitotic Centromere Associated Kinesin (MCAK) is a microtubule depolymerase from the Kinesin-13 famil...
Kinesins and dyneins play important roles during cell division. Using RNA interference (RNAi) to dep...
We have performed a mutational analysis together with RNA interference to determine the role of the ...
SummaryTo elucidate the structural basis of the mechanism of microtubule depolymerization by kinesin...