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1. Structural basis of directional switching by the bacterial flagellum.

2. Single p197 molecules of the mitochondrial genome segregation system of Trypanosoma brucei determine the distance between basal body and outer membrane.

3. Structure of the molecular bushing of the bacterial flagellar motor.

4. Basal Body Protein TbSAF1 Is Required for Microtubule Quartet Anchorage to the Basal Bodies in Trypanosoma brucei .

5. Regulated protein stabilization underpins the functional interplay among basal body components in Trypanosoma brucei .

6. The evolutionary conserved FOXJ1 target gene Fam183b is essential for motile cilia in Xenopus but dispensable for ciliary function in mice.

7. Proximity Interactions among Basal Body Components in Trypanosoma brucei Identify Novel Regulators of Basal Body Biogenesis and Inheritance.

8. Structural Study of the Bacterial Flagellar Basal Body by Electron Cryomicroscopy and Image Analysis.

9. Immunofluorescent staining of septins in primary cilia.

10. Basal Body Structures Differentially Affect Transcription of RpoN- and FliA-Dependent Flagellar Genes in Helicobacter pylori.

11. The modular structure of the inner-membrane ring component PrgK facilitates assembly of the type III secretion system basal body.

12. Assembly and stoichiometry of FliF and FlhA in Salmonella flagellar basal body.

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