Kinesin-14-driven microtubule sliding is regulated by changes in

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Dynein, dynactin and kinesin II display differential microtubule

Dynein microtubule molecular revealing atpase workings structural likely allosteric

Microtubule capture by immobilized dynein, dynactin, and kinesin ii

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Microtubule motors | PLOS ONE
Microtubule motors | PLOS ONE

Overview of kinesin and microtubule architecture. a. schematic

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Intracellular transport, illustration - Stock Image - F020/1414
Intracellular transport, illustration - Stock Image - F020/1414

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Kinesin protein walking on microtubule - YouTube
Kinesin protein walking on microtubule - YouTube

A mathematical understanding of how cytoplasmic dynein walks on

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Dynein, dynactin and kinesin II display differential microtubule
Dynein, dynactin and kinesin II display differential microtubule

Solved in cytoplasmic dynein is a microtubule motor involved

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Schematic of dynein walking along microtubules. (a) Images highlighting
Schematic of dynein walking along microtubules. (a) Images highlighting
Kinesin-14-driven microtubule sliding is regulated by changes in
Kinesin-14-driven microtubule sliding is regulated by changes in
키네신 구조(모터 단백질)키네신 스톡 벡터(로열티 프리) 592869851 | Shutterstock
키네신 구조(모터 단백질)키네신 스톡 벡터(로열티 프리) 592869851 | Shutterstock
Microtubule-base motor proteins dynein and kinesin contribute to the
Microtubule-base motor proteins dynein and kinesin contribute to the
Microtubule capture by immobilized dynein, dynactin, and kinesin II
Microtubule capture by immobilized dynein, dynactin, and kinesin II
Dynein, dynactin, and kinesin II's microtubule binding activity rises
Dynein, dynactin, and kinesin II's microtubule binding activity rises
Overview of kinesin and microtubule architecture. a. Schematic
Overview of kinesin and microtubule architecture. a. Schematic
Labelled dynein and its accumulation at the microtubule plus ends
Labelled dynein and its accumulation at the microtubule plus ends