48 results on '"Ciliberto, Andrea"'
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2. Data from Systems Biologists Seek Fuller Integration of Systems Biology Approaches in New Cancer Research Programs
3. Data from Systems Biologists Seek Fuller Integration of Systems Biology Approaches in New Cancer Research Programs
4. Free Article from Systems Biologists Seek Fuller Integration of Systems Biology Approaches in New Cancer Research Programs
5. Triap1 upregulation promotes escape from mitotic-slippage-induced G1 arrest
6. A non-catalytic herpesviral protein reconfigures ERK-RSK signaling by targeting kinase docking systems in the host
7. Epistasis, aneuploidy, and functional mutations underlie evolution of resistance to induced microtubule depolymerization
8. Mitosis
9. Cell Cycle Signaling, Spindle Assembly Checkpoint
10. Epistasis, aneuploidy, and gain-of-function mutations underlie the evolution of resistance to induced microtubule depolymerization
11. PP1 and PP2A Use Opposite Phospho-dependencies to Control Distinct Processes at the Kinetochore
12. Cellular response upon proliferation in the presence of an active mitotic checkpoint
13. PP1 and PP2A use opposite phospho-dependencies to control distinct processes at the kinetochore
14. Implications of alternative routes to APC/C inhibition by the mitotic checkpoint complex
15. Cells Escape an Operational Mitotic Checkpoint through a Stochastic Process
16. Missing Value Monitoring Enhances the Robustness in Proteomics Quantitation
17. Micromanaging checkpoint proteins
18. Not all roads lead to Cdk1
19. Quantitative analysis reveals how EGFR activation and downregulation are coupled in normal but not in cancer cells
20. Bub3 reads phosphorylated MELT repeats to promote spindle assembly checkpoint signaling
21. Adaptation to the spindle checkpoint is regulated by the interplay between Cdc28/Clbs and PP2ACdc55
22. Author response: Bub3 reads phosphorylated MELT repeats to promote spindle assembly checkpoint signaling
23. Threshold-controlled ubiquitination of the EGFR directs receptor fate
24. Erratum: The spindle-assembly checkpoint and the beauty of self-destruction
25. The spindle-assembly checkpoint and the beauty of self-destruction
26. Role of the Mad2 Dimerization Interface in the Spindle Assembly Checkpoint Independent of Kinetochores
27. Endocytosis and Signaling: Cell Logistics Shape the Eukaryotic Cell Plan
28. The Eps8/IRSp53/VASP Network Differentially Controls Actin Capping and Bundling in Filopodia Formation
29. Evidence that Aurora B is implicated in spindle checkpoint signalling independently of error correction
30. Computational modelling of mitotic exit in budding yeast: the role of separase and Cdc14 endocycles
31. Oscillations in Cdc14 release and sequestration reveal a circuit underlying mitotic exit
32. Restriction point control of the mammalian cell cycle via the cyclin E/Cdk2:p27 complex
33. Systems Biologists Seek Fuller Integration of Systems Biology Approaches in New Cancer Research Programs
34. A quantitative systems view of the spindle assembly checkpoint
35. The Influence of Catalysis on Mad2 Activation Dynamics
36. Modular logical modelling of the budding yeast cell cycle
37. Low duplicability and network fragility of cancer genes
38. Antagonism and bistability in protein interaction networks
39. Logical modelling and analysis of the budding yeast cell cycle
40. Modeling Networks of Coupled Enzymatic Reactions Using the Total Quasi-Steady State Approximation
41. Regulation of cell shape by Cdc42 is mediated by the synergic actin-bundling activity of the Eps8–IRSp53 complex
42. In Vitro FRAP Identifies the Minimal Requirements for Mad2 Kinetochore Dynamics
43. Rewiring the Exit from Mitosis
44. Steady States and Oscillations in the p53/Mdm2 Network
45. Mathematical model of the morphogenesis checkpoint in budding yeast
46. Modeling Regulatory Networks at Virginia Tech
47. A kinetic model of the cyclin E/Cdk2 developmental timer in Xenopus laevis embryos
48. Mathematical model of the cell division cycle of fission yeast
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