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1. Mastigoneme structure reveals insights into the O-linked glycosylation code of native hydroxyproline-rich helices.

2. Distribution and bulk flow analyses of the intraflagellar transport (IFT) motor kinesin-2 support an "on-demand" model for Chlamydomonas ciliary length control.

3. Global and local functions of the Fused kinase ortholog CdaH in intracellular patterning in Tetrahymena.

4. Assembly of FAP93 at the proximal axoneme in Chlamydomonas cilia.

5. The Small Interactor of PKD2 protein promotes the assembly and ciliary entry of the Chlamydomonas PKD2-mastigoneme complexes.

6. Small Interactor of PKD2 (SIP), a novel PKD2-related single-pass transmembrane protein, is required for proteolytic processing and ciliary import of Chlamydomonas PKD2.

7. Wbm0076, a candidate effector protein of the Wolbachia endosymbiont of Brugia malayi, disrupts eukaryotic actin dynamics.

8. Chlamydomonas ARMC2/PF27 is an obligate cargo adapter for intraflagellar transport of radial spokes.

9. Bardet-Biedl syndrome 3 protein promotes ciliary exit of the signaling protein phospholipase D via the BBSome.

10. The BBSome restricts entry of tagged carbonic anhydrase 6 into the cis-flagellum of Chlamydomonas reinhardtii.

11. Diffusion rather than intraflagellar transport likely provides most of the tubulin required for axonemal assembly in Chlamydomonas .

12. Intraflagellar transport protein RABL5/IFT22 recruits the BBSome to the basal body through the GTPase ARL6/BBS3.

13. Trafficking of ciliary membrane proteins by the intraflagellar transport/BBSome machinery.

14. In vivo analysis of outer arm dynein transport reveals cargo-specific intraflagellar transport properties.

15. In vivo analyses of radial spoke transport, assembly, repair and maintenance.

16. Chlamydomonas Basal Bodies as Flagella Organizing Centers.

17. The Bardet-Biedl syndrome protein complex is an adapter expanding the cargo range of intraflagellar transport trains for ciliary export.

18. H + - and Na + - elicited rapid changes of the microtubule cytoskeleton in the biflagellated green alga Chlamydomonas .

19. Protein transport in growing and steady-state cilia.

20. Together, the IFT81 and IFT74 N-termini form the main module for intraflagellar transport of tubulin.

21. An age of enlightenment for cilia: The FASEB summer research conference on the "Biology of Cilia and Flagella".

22. Single-particle imaging reveals intraflagellar transport-independent transport and accumulation of EB1 in Chlamydomonas flagella.

23. Methods for Studying Movement of Molecules Within Cilia.

24. IFT-Cargo Interactions and Protein Transport in Cilia.

25. Kinesin-13 regulates the quantity and quality of tubulin inside cilia.

26. Tubulin transport by IFT is upregulated during ciliary growth by a cilium-autonomous mechanism.

27. NPHP4 controls ciliary trafficking of membrane proteins and large soluble proteins at the transition zone.

28. Getting tubulin to the tip of the cilium: one IFT train, many different tubulin cargo-binding sites?

29. A differential cargo-loading model of ciliary length regulation by IFT.

30. Flagellar central pair assembly in Chlamydomonas reinhardtii.

31. Cycling of the signaling protein phospholipase D through cilia requires the BBSome only for the export phase.

32. Avalanche-like behavior in ciliary import.

33. In vivo imaging of IFT in Chlamydomonas flagella.

34. CEP290 tethers flagellar transition zone microtubules to the membrane and regulates flagellar protein content.

35. The Chlamydomonas reinhardtii BBSome is an IFT cargo required for export of specific signaling proteins from flagella.

36. HA-tagging of putative flagellar proteins in Chlamydomonas reinhardtii identifies a novel protein of intraflagellar transport complex B.

37. Proteins related to green algal striated fiber assemblin are present in stramenopiles and alveolates.

38. Total internal reflection fluorescence (TIRF) microscopy of Chlamydomonas flagella.

39. High-speed digital imaging of ependymal cilia in the murine brain.

40. Mutations in Hydin impair ciliary motility in mice.

41. Chlamydomonas reinhardtii hydin is a central pair protein required for flagellar motility.

42. The NIT1 promoter allows inducible and reversible silencing of centrin in Chlamydomonas reinhardtii.

43. GFP as a tool for the analysis of proteins in the flagellar basal apparatus of Chlamydomonas.

44. Posttranslational modifications of alpha-tubulin of Toxoplasma gondii.

45. Part of Ran is associated with AKAP450 at the centrosome: involvement in microtubule-organizing activity.

46. Centrin deficiency in Chlamydomonas causes defects in basal body replication, segregation and maturation.

47. Striated fiber assemblin in apicomplexan parasites.

48. Localization of p210-related proteins in green flagellates and analysis of flagellar assembly in the green alga Dunaliella bioculatawith monoclonal anti-p210.

49. Analysis of Chlamydomonas SF-assemblin by GFP tagging and expression of antisense constructs.

50. Basal body replication in green algae--when and where does it start?

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