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In eukaryotic cells, some motor proteins associate with microtubules to ferry cargo to specific intracellular locations.
Microtubule-associated motor proteins are broadly classified into two superfamilies — kinesins and dyneins.
Structurally, kinesins have globular heads that extend to a rod-like stalk and connect to fan-shaped receptors.
The globular head binds to microtubules, while the fan-shaped receptor binds to the organelles and vesicles.
During interphase, kinesins move the cargos towards the cell periphery using hand-over-hand movement, where the ATP-hydrolyzing globular heads work in tandem to move across the microtubules.
The dynein superfamily consists of ATP-driven proteins that carry out all microtubule minus-end-based transport.
Cytoplasmic dyneins are made up of heavy, intermediate, light, and light-intermediate chains. The heavy chain has a globular head and a stalk responsible for energy generation and binding with the microtubules, respectively.
Cytoplasmic dynein associates with other large proteins, like dynactin, to attach to the adaptor-bound cargo. These complexes then move organelles and vesicles towards other organelles near the center of the cell.
Komórki eukariotyczne mają różne białka motoryczne do transportu różnych ładunków w komórce. Te białka motoryczne różnią się w zależności od filamenty…
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