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1. Reconstitution of the core of the malaria parasite glideosome with recombinant Plasmodium class XIV myosin A and Plasmodium actin

3. Kinesin-1-transported liposomes prefer to go straight in 3D microtubule intersections by a mechanism shared by other molecular motors.

4. "Spatial Relationships Matter: Kinesin-1 Molecular Motors Transport Liposome Cargo Through 3D Microtubule Intersections In Vitro ".

5. Double-headed binding of myosin II to F-actin shows the effect of strain on head structure.

6. Mechanism of small molecule inhibition of Plasmodium falciparum myosin A informs antimalarial drug design.

7. Acetylation of fission yeast tropomyosin does not promote differential association with cognate formins.

8. High-throughput force measurement of individual kinesin-1 motors during multi-motor transport.

9. Coil-to-α-helix transition at the Nup358-BicD2 interface activates BicD2 for dynein recruitment.

10. Resistance of Acta2 R149C/+ mice to aortic disease is associated with defective release of mutant smooth muscle α-actin from the chaperonin-containing TCP1 folding complex.

11. The actomyosin interface contains an evolutionary conserved core and an ancillary interface involved in specificity.

12. Full-length Plasmodium falciparum myosin A and essential light chain PfELC structures provide new anti-malarial targets.

13. Actin R256 Mono-methylation Is a Conserved Post-translational Modification Involved in Transcription.

14. Coiled-coil registry shifts in the F684I mutant of Bicaudal D result in cargo-independent activation of dynein motility.

15. Multiple kinesins induce tension for smooth cargo transport.

16. Unusual dynamics of the divergent malaria parasite Pf Act1 actin filament.

17. Plasmodium myosin A drives parasite invasion by an atypical force generating mechanism.

18. MAP7 regulates organelle transport by recruiting kinesin-1 to microtubules.

19. Myosin Va transport of liposomes in three-dimensional actin networks is modulated by actin filament density, position, and polarity.

20. Hypertrophic cardiomyopathy R403Q mutation in rabbit β-myosin reduces contractile function at the molecular and myofibrillar levels.

21. Magnetic Cytoskeleton Affinity Purification of Microtubule Motors Conjugated to Quantum Dots.

22. Recruitment of two dyneins to an mRNA-dependent Bicaudal D transport complex.

23. Distinct sites in tropomyosin specify shared and isoform-specific regulation of myosins II and V.

24. Tropomyosin Must Interact Weakly with Actin to Effectively Regulate Thin Filament Function.

25. The structure of the actin-smooth muscle myosin motor domain complex in the rigor state.

26. Reconstitution of the core of the malaria parasite glideosome with recombinant Plasmodium class XIV myosin A and Plasmodium actin.

27. Mechanoregulated inhibition of formin facilitates contractile actomyosin ring assembly.

28. Fission yeast myosin Myo2 is down-regulated in actin affinity by light chain phosphorylation.

29. Vascular disease-causing mutation, smooth muscle α-actin R258C, dominantly suppresses functions of α-actin in human patient fibroblasts.

30. Small teams of myosin Vc motors coordinate their stepping for efficient cargo transport on actin bundles.

31. Myosin Va molecular motors manoeuvre liposome cargo through suspended actin filament intersections in vitro.

32. Altered Smooth Muscle Cell Force Generation as a Driver of Thoracic Aortic Aneurysms and Dissections.

33. Cargo Transport by Two Coupled Myosin Va Motors on Actin Filaments and Bundles.

34. Severe Molecular Defects Exhibited by the R179H Mutation in Human Vascular Smooth Muscle α-Actin.

35. Tropomyosin isoforms bias actin track selection by vertebrate myosin Va.

36. Myosin Vc Is Specialized for Transport on a Secretory Superhighway.

37. A single-headed fission yeast myosin V transports actin in a tropomyosin-dependent manner.

38. Vascular disease-causing mutation R258C in ACTA2 disrupts actin dynamics and interaction with myosin.

39. A Toxoplasma gondii class XIV myosin, expressed in Sf9 cells with a parasite co-chaperone, requires two light chains for fast motility.

40. Motor coupling through lipid membranes enhances transport velocities for ensembles of myosin Va.

41. Role of the essential light chain in the activation of smooth muscle myosin by regulatory light chain phosphorylation.

42. Delineating cooperative responses of processive motors in living cells.

43. A single molecule approach to mRNA transport by a class V myosin.

44. Fission yeast tropomyosin specifies directed transport of myosin-V along actin cables.

45. Motor domain phosphorylation modulates kinesin-1 transport.

46. More than just a cargo adapter, melanophilin prolongs and slows processive runs of myosin Va.

47. Single-molecule reconstitution of mRNA transport by a class V myosin.

48. Intracellular transport: the causes for pauses.

49. Transgenic mouse α- and β-cardiac myosins containing the R403Q mutation show isoform-dependent transient kinetic differences.

50. A periodic pattern of evolutionarily conserved basic and acidic residues constitutes the binding interface of actin-tropomyosin.

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