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1. Permanent deconstruction of intracellular primary cilia in differentiating granule cell neurons.

2. The proximal centriole-like structure maintains nucleus-centriole architecture in sperm.

3. Structure and interactions of the endogenous human Commander complex.

4. 9-fold symmetry is not essential for centriole elongation and formation of new centriole-like structures.

5. The Centrosomes of Haploid and Diploid Cells Have an Equal Number of Centrioles in the Parasitoid Wasp Anisopteromalus Calandrae .

6. Structural Analysis of Sperm Centrioles Using N-STORM.

7. Centrosome Formation in the Bovine Early Embryo.

8. Atypical Centriolar Composition Correlates with Internal Fertilization in Fish.

9. Sub-centrosomal mapping identifies augmin-γTuRC as part of a centriole-stabilizing scaffold.

10. A ciliopathy complex builds distal appendages to initiate ciliogenesis.

11. Early Drosophila Oogenesis: A Tale of Centriolar Asymmetry.

12. Tuning SAS-6 architecture with monobodies impairs distinct steps of centriole assembly.

13. A dynamic basal complex modulates mammalian sperm movement.

14. Ultrastructural evidence for an unusual mode of ciliogenesis in mouse multiciliated epithelia.

15. A first-takes-all model of centriole copy number control based on cartwheel elongation.

16. Superresolution characterization of core centriole architecture.

17. The multi-scale architecture of mammalian sperm flagella and implications for ciliary motility.

18. Centrosome structure and biogenesis: Variations on a theme?

19. Primary cilia biogenesis and associated retinal ciliopathies.

20. Transcriptional regulation of multiciliated cell differentiation.

21. Analyzing Centrioles and Cilia by Expansion Microscopy.

22. Novel features of centriole polarity and cartwheel stacking revealed by cryo-tomography.

23. Architecture of the centriole cartwheel-containing region revealed by cryo-electron tomography.

24. Sperm structure of the cattle egret (Bubulcus ibis).

25. Principal Postulates of Centrosomal Biology. Version 2020.

26. WDR90 is a centriolar microtubule wall protein important for centriole architecture integrity.

27. Dynamic centriolar localization of Polo and Centrobin in early mitosis primes centrosome asymmetry.

28. Sas4 links basal bodies to cell division via Hippo signaling.

29. Homogeneous multifocal excitation for high-throughput super-resolution imaging.

30. Identification of a Structurally Dynamic Domain for Oligomer Formation in Rootletin.

31. With Age Comes Maturity: Biochemical and Structural Transformation of a Human Centriole in the Making.

32. Prolonged mitosis results in structurally aberrant and over-elongated centrioles.

33. Super-resolution microscopy reveals coupling between mammalian centriole subdistal appendages and distal appendages.

34. The ubiquitin ligase FBXW7 targets the centriolar assembly protein HsSAS-6 for degradation and thereby regulates centriole duplication.

35. Centrioles and Ciliary Structures during Male Gametogenesis in Hexapoda: Discovery of New Models.

36. Deregulation of Neuro-Developmental Genes and Primary Cilium Cytoskeleton Anomalies in iPSC Retinal Sheets from Human Syndromic Ciliopathies.

37. A helical inner scaffold provides a structural basis for centriole cohesion.

38. The Singularity of the Drosophila Male Germ Cell Centriole: The Asymmetric Distribution of Sas4 and Sas6.

39. Heteromorphism of sperm axonemes in a parasitic flatworm, progenetic Diplocotyle olrikii Krabbe, 1874 (Cestoda, Spathebothriidea).

40. hVFL3/CCDC61 is a component of mother centriole subdistal appendages required for centrosome cohesion and positioning.

41. Requirement of NPHP5 in the hierarchical assembly of basal feet associated with basal bodies of primary cilia.

42. Expansion microscopy for the analysis of centrioles and cilia.

43. A moment at the cell centre.

44. Defining the layers of a sensory cilium with STORM and cryoelectron nanoscopy.

45. SFI1 promotes centriole duplication by recruiting USP9X to stabilize the microcephaly protein STIL.

46. Mechanism and Regulation of Centriole and Cilium Biogenesis.

47. CEP120 interacts with C2CD3 and Talpid3 and is required for centriole appendage assembly and ciliogenesis.

48. High-resolution characterization of centriole distal appendage morphology and dynamics by correlative STORM and electron microscopy.

49. Leukocyte Nucleus Reveals a Linear Order of Chromosomes Separated in Two Parental Genomes That Favors the Process of Gene Activation.

50. Centriole assembly at a glance.

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