Dynein harnesses active fluctuations of microtubules for faster movement
The cytoskeleton forms a dynamic network that generates fluctuations larger than thermal agitation of the cytoplasm 1 . Here, we tested whether dynein, a minus-end-directed microtubule (MT) motor 2 , can harness energy from these fluctuations using optical trapping in vitro. We show that dynein form...
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Veröffentlicht in: | Nature physics 2020, Vol.16 (3), p.312-316 |
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Sprache: | eng |
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Zusammenfassung: | The cytoskeleton forms a dynamic network that generates fluctuations larger than thermal agitation of the cytoplasm
1
. Here, we tested whether dynein, a minus-end-directed microtubule (MT) motor
2
, can harness energy from these fluctuations using optical trapping in vitro. We show that dynein forms an asymmetric slip bond with MTs, where its detachment rate increases more slowly under hindering forces than assisting forces. This asymmetry enables dynein to generate unidirectional motility towards the minus-end from force fluctuations. Consistent with our model, oscillatory forces exerted by the trap drive dynein stepping without net force and ATP. Dynein is capable of ratcheting towards the minus-end, even when the net force is in the plus-end direction. With ATP, force oscillations increase the velocity and stall force of dynein as it transports cargos and glides MTs. Therefore, dynein is a mechanical ratchet that rectifies cytoskeletal fluctuations to move faster and resists higher forces along MTs.
The motor protein dynein is associated with microtubule force generation in the cell; how it interacts with cytoskeletal fluctuations is still an open question. Here the authors show that dynein can harness these fluctuations to generate power and move faster towards the minus-end of microtubules. |
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ISSN: | 1745-2473 1745-2481 |
DOI: | 10.1038/s41567-019-0757-4 |