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- Co-ordination of G1 Progression
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1. START control in yeast
- Prof. Curt Wittenberg
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2. The pRB/E2F pathway
- Prof. Jacqueline Lees
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3. Cell cycle control by the ubiquitin system in mammals
- Prof. Michele Pagano
- Chromosome Duplication
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4. Replication licensing
- Prof. Julian Blow
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5. Initiation of DNA replication
- Prof. Bruce Stillman
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6. Regulation of replication fork progression and stability
- Dr. Luis Aragón
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7. Nucleosome assembly during DNA replication
- Dr. Alain Verreault
- Preparing for Mitosis
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8. Sister chromatid cohesion: simple concept, complex reality
- Prof. Douglas Koshland
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9. Mitotic chromosome condensation
- Prof. Andrew Belmont
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10. Centrosome duplication and separation in animal cells
- Prof. Andrew Fry
- Spindle Assembly and Chromosome Segregation
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11. Bipolar spindle assembly
- Dr. Eric Karsenti
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12. Chromosome bi-orientation in yeast
- Prof. Mike Stark
- Prof. Tomo Tanaka
- Mitotic Exit and Cytokinesis
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14. Cleavage furrow formation and ingression during animal cytokinesis
- Dr. Pier Paolo D'Avino
- Checkpoints Governing Cell Cycle Progression
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15. The DNA damage response
- Dr. Vincenzo Costanzo
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16. The spindle checkpoint
- Dr. Kevin Hardwick
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17. Spindle movement and checkpoint control during mitosis in yeast
- Prof. John Cooper
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18. The G2/M transition
- Prof. Dr. René Medema
- The Cell Cycle in Development and Cancer
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19. Mouse models to investigate cell cycle and cancer
- Dr. Philipp Kaldis
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20. Cell cycle: a complex network of signals regulating cell proliferation
- Prof. Antonio Giordano
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21. Drug discovery and target validation in the p53 pathway
- Prof. Sir David Lane
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22. Role and regulation of Cdk inhibitors in development and cancer
- Prof. Martine Roussel
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24. The Myc transcription factor network
- Prof. Robert N. Eisenman
- Meiosis: A Specialized Cell Cycle
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25. Recombination and the formation of chiasmata in meiosis
- Prof. Matthew Whitby
- Archived Lectures *These may not cover the latest advances in the field
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26. Geometric regulation of kinetochore orientation
- Prof. Yoshinori Watanabe
Printable Handouts
Navigable Slide Index
- Introduction
- Cell division
- DNA replication / Chromosome segregation
- Alternating waves of activity
- Lessons from cell fusion (1)
- Lessons from cell fusion (2)
- Lessons from cell fusion (3)
- Interdependence
- Cyclins (1)
- Cyclins (2)
- Cyclin/cdks
- Cyclin/cdks in mammals
- Cyclin B/cdk1
- Cdk activation
- Bistability (1)
- Bistability (2)
- Polo-like kinase-1 (1)
- Polo-like kinase-1 (2)
- Function of Plk1 in mitosis
- Checkpoints (1)
- Checkpoints (2)
- G2 checkpoint
- Checkpoint recovery (1)
- Checkpoint recovery (2)
- Plk1 in checkpoint recovery (1)
- Plk1 in checkpoint recovery (2)
- Plk1 controls recovery
- Claspin (1)
- Claspin (2)
- Plk1 controls checkpoint silencing
- Plk1 activation (1)
- Plk1 activation (2)
- Plk1 activity gradually increases from G2 to M
- T210-phosphorylation in recovery
- Plk1 activity requires T210-phosphorylation
- T210 phosphorylation
- Bora specifically activates Aurora A
- Aurora A is responsible for activation of Plk1 in G2
- Aurora A controls Plk1 activation
- Bora controls recovery
- Mitotic entry
- Plk1 controls checkpoint recovery
- Acknowledgements
Topics Covered
- Cell Division
- Cell fusion experiments
- The cyclins and Cdks
- Mitosis
- Cyclin B1/Cdk1
- Feedback loops in Cdk activation
- Polo-like kinase-1
- Checkpoints
- Checkpoint recovery
Talk Citation
Medema, R. (2009, April 30). The G2/M transition [Video file]. In The Biomedical & Life Sciences Collection, Henry Stewart Talks. Retrieved April 19, 2025, from https://doi.org/10.69645/WWXO1280.Export Citation (RIS)
Publication History
- Published on April 30, 2009
Financial Disclosures
- Prof. Dr. René Medema has not informed HSTalks of any commercial/financial relationship that it is appropriate to disclose.