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1. Analysis of the phosphoproteome of CK2α(–/–)/Δα′ C2C12 myoblasts compared to the wild-type cells

2. Targeting CK2 in cancer: a valuable strategy or a waste of time?

4. Contribution of the CK2 Catalytic Isoforms α and α’ to the Glycolytic Phenotype of Tumor Cells

5. Targeting Protein Kinase CK2: Evaluating CX-4945 Potential for GL261 Glioblastoma Therapy in Immunocompetent Mice

6. Exploring the CK2 Paradox: Restless, Dangerous, Dispensable

7. Data from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

8. Supplementary Figure 4 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

9. Supplementary Figure Legends 1-4 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

10. Supplementary Figure 3 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

11. Supplementary Materials and Methods from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

12. Supplementary Figure 2 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

13. Supplementary Figure 1 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

17. Targeting CK2 in cancer: a valuable strategy or a waste of time?

18. How can a traffic light properly work if it is always green? The paradox of CK2 signaling

19. Contribution of the CK2 Catalytic Isoforms α and α’ to the Glycolytic Phenotype of Tumor Cells

20. Comparing the efficacy and selectivity of Ck2 inhibitors. A phosphoproteomics approach

21. A N-terminally deleted form of the CK2α' catalytic subunit is sufficient to support cell viability

22. Pharmacophore-guided discovery of CDC25 inhibitors causing cell cycle arrest and tumor regression

23. Up-Regulation of the Alpha Prime Subunit of Protein Kinase CK2 as a Marker of Fast Proliferation in GL261 Cultured Cells

24. Re-evaluation of protein kinase CK2 pleiotropy: new insights provided by a phosphoproteomics analysis of CK2 knockout cells

25. An Updated View on an Emerging Target: Selected Papers from the 8th International Conference on Protein Kinase CK2

26. Deciphering the role of protein kinase CK2 in the maturation/stability of F508del-CFTR

27. Effects of CK2β subunit down-regulation on Akt signalling in HK-2 renal cells

28. IPK2019: David Shugar and the genesis of the IPK conferences

29. Protein Kinase CK2 Subunits Differentially Perturb the Adhesion and Migration of GN11 Cells: A Model of Immature Migrating Neurons

30. Prevalence and significance of the commonest phosphorylated motifs in the human proteome: a global analysis

31. 'Janus' efficacy of CX-5011: CK2 inhibition and methuosis induction by independent mechanisms

32. A journey through the cytoskeleton with protein kinase CK2

33. A proteomics analysis of CK2β(-/-) C2C12 cells provides novel insights into the biological functions of the non-catalytic β subunit

34. A proteomics analysis of CK2β

35. Pharmacophore-guided discovery of CDC25 inhibitors causing cell cycle arrest and cell death

36. Inhibition of protein kinase CK2 by CX-5011 counteracts imatinib-resistance preventing rpS6 phosphorylation in chronic myeloid leukaemia cells: new combined therapeutic strategies

37. Design, validation and efficacy of bisubstrate inhibitors specifically affecting ecto-CK2 kinase activity

38. Effects of CK2 inhibition in cultured fibroblasts from Type 1 Diabetic patients with or without nephropathy

39. A Single Kinase Generates the Majority of the Secreted Phosphoproteome

41. The Golgi ‘casein kinase’ Fam20C is a genuine ‘phosvitin kinase’ and phosphorylates polyserine stretches devoid of the canonical consensus

42. The importance of negative determinants as modulators of CK2 targeting. The lesson of Akt2 S131

43. Dependence of HSP27 cellular level on protein kinase CK2 discloses novel therapeutic strategies

44. Developmental phosphoproteomics identifies the kinase CK2 as a driver of Hedgehog signaling and a therapeutic target in medulloblastoma

45. Effects of altered expression and activity levels of CK1δ and ɛ on tumor growth and survival of colorectal cancer patients

46. Differential phosphorylation of Akt1 and Akt2 by protein kinase CK2 may account for isoform specific functions

47. Casein kinase: the triple meaning of a misnomer

48. CK2 involvement in ESCRT-III complex phosphorylation

49. A 'SYDE' effect of hierarchical phosphorylation: possible relevance to the cystic fibrosis basic defect

50. Cell-permeable dual inhibitors of protein kinases CK2 and PIM-1: structural features and pharmacological potential

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