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82 results on '"microtubule depolymerization"'

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1. Synthesis and Structure–Activity Relationship of Salvinal Derivatives as Potent Microtubule Inhibitors.

2. CRK41 Modulates Microtubule Depolymerization in Response to Salt Stress in Arabidopsis.

3. Genetic Control of Kinetochore-Driven Microtubule Growth in Drosophila Mitosis.

4. A synthetic ancestral kinesin-13 depolymerizes microtubules faster than any natural depolymerizing kinesin

5. Diclofenac: A Nonsteroidal Anti-Inflammatory Drug Inducing Cancer Cell Death by Inhibiting Microtubule Polymerization and Autophagy Flux.

6. Synthesis and Structure–Activity Relationship of Salvinal Derivatives as Potent Microtubule Inhibitors

7. CRK41 Modulates Microtubule Depolymerization in Response to Salt Stress in Arabidopsis

8. KIF2C regulates synaptic plasticity and cognition in mice through dynamic microtubule depolymerization

9. Genetic Control of Kinetochore-Driven Microtubule Growth in Drosophila Mitosis

10. Phosphatidylinositol-5-phosphate 4-kinase gamma accumulates at the spindle pole and prevents microtubule depolymerization

11. Diclofenac: A Nonsteroidal Anti-Inflammatory Drug Inducing Cancer Cell Death by Inhibiting Microtubule Polymerization and Autophagy Flux

12. KIF2C regulates synaptic plasticity and cognition in mice through dynamic microtubule depolymerization

13. KIF2C regulates synaptic plasticity and cognition in mice through dynamic microtubule depolymerization

14. KIF2C regulates synaptic plasticity and cognition in mice through dynamic microtubule depolymerization

15. Structures of isothiocyanates attributed to reactive oxygen species generation and microtubule depolymerization in HepG2 cells.

16. Rabies Virus Infection Induces Microtubule Depolymerization to Facilitate Viral RNA Synthesis by Upregulating HDAC6

17. The Kinesin-8 Kip3 Depolymerizes Microtubules with a Collective Force-Dependent Mechanism

18. KIF2C regulates synaptic plasticity and cognition in mice through dynamic microtubule depolymerization

19. NF-κB activation enhances STING signaling by altering microtubule-mediated STING trafficking.

20. The C-terminal region of the motor protein MCAK controls its structure and activity through a conformational switch

21. Spatial variation of microtubule depolymerization in large asters

22. Mcp1p tracks microtubule plus ends to destabilize microtubules at cell tips.

23. Emergent properties of a mitotic Kif18b-MCAK-EB network

24. A synthetic ancestral kinesin-13 depolymerizes microtubules faster than any natural depolymerizing kinesin.

25. Long tethers provide high-force coupling of the Dam1 ring to shortening microtubules.

26. Primary acute lymphoblastic leukemia cells are susceptible to microtubule depolymerization in G1 and M phases through distinct cell death pathways.

28. The roles of microtubules and membrane tension in axonal beading, retraction, and atrophy

29. KIF2C regulates synaptic plasticity and cognition in mice through dynamic microtubule depolymerization.

31. Insights into the Contribution of Voltage-Gated Sodium Channel 1.7 to Paclitaxel-Induced Neuropathy

32. Unattached kinetochores drive their own capturing by sequestering a CLASP

33. Microtubule-binding protein FOR20 promotes microtubule depolymerization and cell migration

34. 2-Acetylamino-3-[4-(2-acetylamino-2-carboxyethylsulfanylcarbonylamino) phenyl carbamoylsulfanyl] propionic acid, a glutathione reductase inhibitor, induces G

36. Synthesis of New Simplified and Racemic Hemiasterlin Derivatives with Extremely High Cytotoxicity

37. Structural Model for Tubulin Recognition and Deformation by Kinesin-13 Microtubule Depolymerases

39. Hispidin induces autophagic and necrotic death in SGC-7901 gastric cancer cells through lysosomal membrane permeabilization by inhibiting tubulin polymerization

40. Author Correction: Cryo-EM reveals the structural basis of microtubule depolymerization by kinesin-13s

41. Microtubule Depolymerization by the Kinesin-8 Motor Kip3p: A Mathematical Model

42. Unconventional Motoring: An Overview of the Kin C and Kin I Kinesins

43. A Mechanism for Microtubule Depolymerization by KinI Kinesins

44. Preparation of Segmented Microtubules to Study Motions Driven by the Disassembling Microtubule Ends

45. Calcium-dependent proteasome activation is required for axonal neurofilament degradation

47. Mitosis: Riding the Protofilament Curl

49. Developmental-dependent action of microtubule depolymerization on the function and structure of synaptic glycine receptor clusters in spinal neurons

50. Cardiac hypertrophic and developmental regulation of the beta-tubulin multigene family

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