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3. Rapid, efficient auxin-inducible protein degradation in Candida pathogens.

4. Cdc14 phosphatase counteracts Cdk-dependent Dna2 phosphorylation to inhibit resection during recombinational DNA repair.

5. Cdc14 phosphatase contributes to cell wall integrity and pathogenesis in Candida albicans .

6. A new toolkit for gene tagging in Candida albicans containing recyclable markers.

7. Paxillin-Mediated Recruitment of Calcineurin to the Contractile Ring Is Required for the Correct Progression of Cytokinesis in Fission Yeast.

8. The anillin-related Int1 protein and the Sep7 septin collaborate to maintain cellular ploidy in Candida albicans.

9. A single nucleotide polymorphism uncovers a novel function for the transcription factor Ace2 during Candida albicans hyphal development.

10. The NDR/LATS kinase Cbk1 controls the activity of the transcriptional regulator Bcr1 during biofilm formation in Candida albicans.

11. CDK-dependent phosphorylation of Mob2 is essential for hyphal development in Candida albicans.

12. Dbf2 is essential for cytokinesis and correct mitotic spindle formation in Candida albicans.

13. Sep7 is essential to modify septin ring dynamics and inhibit cell separation during Candida albicans hyphal growth.

14. The Cdc14p phosphatase affects late cell-cycle events and morphogenesis in Candida albicans.

15. The mitotic cyclins Clb2p and Clb4p affect morphogenesis in Candida albicans.

16. Potassium-induced apoptosis in rat cerebellar granule cells involves cell-cycle blockade at the G1/S transition.

17. p25rum1 orders S phase and mitosis by acting as an inhibitor of the p34cdc2 mitotic kinase.

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