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19 results on '"Meng-Fu Bryan Tsou"'

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1. Systems-level analyses of protein-protein interaction network dysfunctions via epichaperomics identify cancer-specific mechanisms of stress adaptation

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

3. Super-resolution architecture of mammalian centriole distal appendages reveals distinct blade and matrix functional components

4. Promotion and Suppression of Centriole Duplication Are Catalytically Coupled through PLK4 to Ensure Centriole Homeostasis

5. Stabilization of Cartwheel-less Centrioles for Duplication Requires CEP295-Mediated Centriole-to-Centrosome Conversion

6. 53BP1 and USP28 mediate p53-dependent cell cycle arrest in response to centrosome loss and prolonged mitosis

7. De novo centriole formation in human cells is error-prone and does not require SAS-6 self-assembly

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

10. Promotion and Suppression of Centriole Duplication Are Catalytically Coupled through PLK4 to Ensure Centriole Homeostasis

11. Spatial control of primary ciliogenesis by subdistal appendages alters sensation-associated properties of cilia

12. De novo centriole formation in human cells is error-prone and does not require SAS-6 self-assembly

13. PAR-dependent and geometry-dependent mechanisms of spindle positioning

14. The AmAZI1ng Roles of Centriolar Satellites during Development

15. Super-resolution architecture of mammalian centriole distal appendages reveals distinct blade and matrix functional components.

16. LET-99 opposes Gα/GPR signaling to generate asymmetry for spindle positioning in response to PAR and MES-1/SRC-1 signaling.

17. Centriole Duplication: When PLK4 Meets Ana2/STIL

18. The conversion of centrioles to centrosomes: essential coupling of duplication with segregation.

19. Centriole distal appendages promote membrane docking, leading to cilia initiation.

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