While interphase mitochondria associate with microtubules, mitotic mitochondria dissociate from spindle microtubules and localize in the cell periphery. Here, we show that this redistribution is not mediated by mitochondrial active transport or tethering to the cytoskeleton. Instead, kinesin and dynein, which link mitochondria to microtubules, are shed from the mitochondrial surface. Shedding is driven by phosphorylation of mitochondrial and cytoplasmic targets by CDK1 and Aurora A. Forced recruitment of motor proteins to mitotic mitochondria to override this shedding prevents their proper symmetrical distribution and disrupts the balanced inheritance of mitochondria to daughter cells. Moreover, when mitochondria with bound dynein bind to t...
During the formation of the metaphase spindle in animal somatic cells, kinetochore microtubule bundl...
SummaryThe minus-end directed microtubule motor protein cytoplasmic dynein contributes to many aspec...
Microtubule-based mitochondrial transport into dendrites and axons is vital for sustaining neuronal ...
SummaryWhile interphase mitochondria associate with microtubules, mitotic mitochondria dissociate fr...
Mitochondria are crucial to the cell and perform numerous functions including generating cellular AT...
Mitochondria are multifunctional organelles that not only produce energy for the cell, but are also ...
During cytokinesis, the final stage of cell division, a contractile ring composed of actin and myosi...
Cytoplasmic dynein is the predominant minus-end-directed microtubule (MT) motor in most eukaryotic c...
<div><p>Mitochondria are dynamic organelles with multiple cellular functions, including ATP producti...
Kinesins and dyneins play important roles during cell division. Using RNA interference (RNAi) to dep...
Dynamic mitochondrial transport into axons and dendrites of neuronal cells is critical for sustainin...
The microtubule (MT) plus-end motor kinesin heavy chain (Khc) is well known for its role in long dis...
SummaryMitochondria are mobile organelles and cells regulate mitochondrial movement in order to meet...
To exert forces, motor proteins bind with one end to cytoskeletal filaments, such as microtubules an...
Abstract To exert forces, motor proteins bind with one end to cytoskeletal filaments, such as microt...
During the formation of the metaphase spindle in animal somatic cells, kinetochore microtubule bundl...
SummaryThe minus-end directed microtubule motor protein cytoplasmic dynein contributes to many aspec...
Microtubule-based mitochondrial transport into dendrites and axons is vital for sustaining neuronal ...
SummaryWhile interphase mitochondria associate with microtubules, mitotic mitochondria dissociate fr...
Mitochondria are crucial to the cell and perform numerous functions including generating cellular AT...
Mitochondria are multifunctional organelles that not only produce energy for the cell, but are also ...
During cytokinesis, the final stage of cell division, a contractile ring composed of actin and myosi...
Cytoplasmic dynein is the predominant minus-end-directed microtubule (MT) motor in most eukaryotic c...
<div><p>Mitochondria are dynamic organelles with multiple cellular functions, including ATP producti...
Kinesins and dyneins play important roles during cell division. Using RNA interference (RNAi) to dep...
Dynamic mitochondrial transport into axons and dendrites of neuronal cells is critical for sustainin...
The microtubule (MT) plus-end motor kinesin heavy chain (Khc) is well known for its role in long dis...
SummaryMitochondria are mobile organelles and cells regulate mitochondrial movement in order to meet...
To exert forces, motor proteins bind with one end to cytoskeletal filaments, such as microtubules an...
Abstract To exert forces, motor proteins bind with one end to cytoskeletal filaments, such as microt...
During the formation of the metaphase spindle in animal somatic cells, kinetochore microtubule bundl...
SummaryThe minus-end directed microtubule motor protein cytoplasmic dynein contributes to many aspec...
Microtubule-based mitochondrial transport into dendrites and axons is vital for sustaining neuronal ...