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1. The Unkempt RNA binding protein reveals a local translation program in centriole overduplication.

2. Trisomy 21 induces pericentrosomal crowding delaying primary ciliogenesis and mouse cerebellar development.

3. Trisomy 21 increases microtubules and disrupts centriolar satellite localization.

4. The SON RNA splicing factor is required for intracellular trafficking structures that promote centriole assembly and ciliogenesis.

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

6. A semi-automated machine learning-aided approach to quantitative analysis of centrosomes and microtubule organization.

7. Tetrahymena Poc5 is a transient basal body component that is important for basal body maturation.

8. Ciliary force-responsive striated fibers promote basal body connections and cortical interactions.

9. CEP135 isoform dysregulation promotes centrosome amplification in breast cancer cells.

10. Sfr1, a Tetrahymena thermophila Sfi1 Repeat Protein, Modulates the Production of Cortical Row Basal Bodies.

11. Sfr13, a member of a large family of asymmetrically localized Sfi1-repeat proteins, is important for basal body separation and stability in Tetrahymena thermophila.

12. Cytological analysis of Tetrahymena thermophila.

13. The two domains of centrin have distinct basal body functions in Tetrahymena.

14. Basal body duplication and maintenance require one member of the Tetrahymena thermophila centrin gene family.

15. Yeast Eap1p, an eIF4E-associated protein, has a separate function involving genetic stability.

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