SummaryMotor proteins in the kinesin-8 family depolymerize microtubules in a length-dependent manner that may be crucial for controlling the length of organelles such as the mitotic spindle. We used single-molecule microscopy to understand the mechanism of length-dependent depolymerization by the budding yeast kinesin-8, Kip3p. We found that after binding at a random position on a microtubule and walking to the plus end, an individual Kip3p molecule pauses there until an incoming Kip3p molecule bumps it off. Kip3p dissociation is accompanied by removal of just one or two tubulin dimers (on average). Such a cooperative mechanism leads to a depolymerization rate that is proportional to the flux of motors to the microtubule end and accounts fo...
Kinesin superfamily motors have a well-characterized ability to move along microtubules and transpor...
The availability of protein is an important factor for the determination of the size of the mitotic ...
SummaryMicrotubules are dynamic filaments whose ends alternate between periods of slow growth and ra...
SummaryMotor proteins in the kinesin-8 family depolymerize microtubules in a length-dependent manner...
Motor proteins in the kinesin-8 family depolymerize microtubules in a length-dependent manner that m...
Summary Motor proteins in the kinesin-8 family depolymerize microtubules in a length-dependent manne...
AbstractProteins from the kinesin-8 family promote microtubule (MT) depolymerization, a process thou...
Kip3kinesin-13MCAKThe microtubule cytoskeleton and the mitotic spindle are highly dynamic structures...
Length regulation of microtubules (MTs) is essential for many cellular processes. Molecular motors l...
Kinesin-8 family members function in microtubule length control and exhibit highly processive plus-e...
AbstractThe assembly and disassembly dynamics of microtubules (MTs) is tightly controlled by MT-asso...
In many intracellular processes, the length distribution of microtubules is controlled by depolymeri...
SummaryBackgroundTo function in diverse cellular processes, the dynamic behavior of microtubules (MT...
SummaryMotility is a fundamentally important property of most members of the kinesin superfamily, bu...
The variety of shapes and sizes of the microtubule cytoskeleton is as great as the number of differe...
Kinesin superfamily motors have a well-characterized ability to move along microtubules and transpor...
The availability of protein is an important factor for the determination of the size of the mitotic ...
SummaryMicrotubules are dynamic filaments whose ends alternate between periods of slow growth and ra...
SummaryMotor proteins in the kinesin-8 family depolymerize microtubules in a length-dependent manner...
Motor proteins in the kinesin-8 family depolymerize microtubules in a length-dependent manner that m...
Summary Motor proteins in the kinesin-8 family depolymerize microtubules in a length-dependent manne...
AbstractProteins from the kinesin-8 family promote microtubule (MT) depolymerization, a process thou...
Kip3kinesin-13MCAKThe microtubule cytoskeleton and the mitotic spindle are highly dynamic structures...
Length regulation of microtubules (MTs) is essential for many cellular processes. Molecular motors l...
Kinesin-8 family members function in microtubule length control and exhibit highly processive plus-e...
AbstractThe assembly and disassembly dynamics of microtubules (MTs) is tightly controlled by MT-asso...
In many intracellular processes, the length distribution of microtubules is controlled by depolymeri...
SummaryBackgroundTo function in diverse cellular processes, the dynamic behavior of microtubules (MT...
SummaryMotility is a fundamentally important property of most members of the kinesin superfamily, bu...
The variety of shapes and sizes of the microtubule cytoskeleton is as great as the number of differe...
Kinesin superfamily motors have a well-characterized ability to move along microtubules and transpor...
The availability of protein is an important factor for the determination of the size of the mitotic ...
SummaryMicrotubules are dynamic filaments whose ends alternate between periods of slow growth and ra...