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1. DUSP6 inhibition overcomes neuregulin/HER3-driven therapy tolerance in HER2+ breast cancer

2. PP2A‐based triple‐strike therapy overcomes mitochondrial apoptosis resistance in brain cancer cells

3. PP2A methylesterase PME‐1 suppresses anoikis and is associated with therapy relapse of PTEN‐deficient prostate cancers

4. Inhibition of adaptive therapy tolerance in cancer: is triplet mitochondrial targeting the key?

5. Structural mechanism for inhibition of PP2A-B56α and oncogenicity by CIP2A

6. Development of actionable targets of multi-kinase inhibitors (AToMI) screening platform to dissect kinase targets of staurosporines in glioblastoma cells

7. Endogenous PP2A inhibitor CIP2A degradation by chaperone-mediated autophagy contributes to the antitumor effect of mitochondrial complex I inhibition

8. Cancer cell line microarray as a novel screening method for identification of radioresistance biomarkers in head and neck squamous cell carcinoma

9. Protein interactome of the Cancerous Inhibitor of protein phosphatase 2A (CIP2A) in Th17 cells

10. CIP2A Constrains Th17 Differentiation by Modulating STAT3 Signaling

11. CIP2A Causes Tau/APP Phosphorylation, Synaptopathy, and Memory Deficits in Alzheimer’s Disease

12. Protein phosphatase 2A (PP2A) inhibitor CIP2A indicates resistance to radiotherapy in rectal cancer

13. Normal stroma suppresses cancer cell proliferation via mechanosensitive regulation of JMJD1a-mediated transcription

14. Serine 62-Phosphorylated MYC Associates with Nuclear Lamins and Its Regulation by CIP2A Is Essential for Regenerative Proliferation

15. CIP2A Promotes T-Cell Activation and Immune Response to Listeria monocytogenes Infection.

16. ColonyArea: an ImageJ plugin to automatically quantify colony formation in clonogenic assays.

17. CIP2A promotes proliferation of spermatogonial progenitor cells and spermatogenesis in mice.

18. ETS1 mediates MEK1/2-dependent overexpression of cancerous inhibitor of protein phosphatase 2A (CIP2A) in human cancer cells.

19. <scp>PP2A</scp> methylesterase <scp>PME</scp> ‐1 suppresses anoikis and is associated with therapy relapse of <scp> PTEN </scp> ‐deficient prostate cancers

20. Supplementary Methods from Senescence Sensitivity of Breast Cancer Cells Is Defined by Positive Feedback Loop between CIP2A and E2F1

21. Supplementary Figure from Ovarian Cancers with Low CIP2A Tumor Expression Constitute an APR-246–Sensitive Disease Subtype

22. Supplementary Table S2 from Senescence Sensitivity of Breast Cancer Cells Is Defined by Positive Feedback Loop between CIP2A and E2F1

23. Data from Ovarian Cancers with Low CIP2A Tumor Expression Constitute an APR-246–Sensitive Disease Subtype

24. Supplementary Table from Ovarian Cancers with Low CIP2A Tumor Expression Constitute an APR-246–Sensitive Disease Subtype

25. Supplementary Data from Ovarian Cancers with Low CIP2A Tumor Expression Constitute an APR-246–Sensitive Disease Subtype

26. Supplementary Figure 5 from Senescence Sensitivity of Breast Cancer Cells Is Defined by Positive Feedback Loop between CIP2A and E2F1

27. Supplementary Figure 4 from Senescence Sensitivity of Breast Cancer Cells Is Defined by Positive Feedback Loop between CIP2A and E2F1

28. Supplementary Figure 3 from Senescence Sensitivity of Breast Cancer Cells Is Defined by Positive Feedback Loop between CIP2A and E2F1

29. Supplementary Figure 2 from Senescence Sensitivity of Breast Cancer Cells Is Defined by Positive Feedback Loop between CIP2A and E2F1

31. Data from PP2A Inactivation Mediated by PPP2R4 Haploinsufficiency Promotes Cancer Development

32. Supplementary table S1 from UBR5 Is Coamplified with MYC in Breast Tumors and Encodes an Ubiquitin Ligase That Limits MYC-Dependent Apoptosis

35. Supplementary Figures 1-6 from UBR5 Is Coamplified with MYC in Breast Tumors and Encodes an Ubiquitin Ligase That Limits MYC-Dependent Apoptosis

38. Supplementary Data from CIP2A Is Associated with Human Breast Cancer Aggressivity

40. Supplementary information from Discovery of a Novel CIP2A Variant (NOCIVA) with Clinical Relevance in Predicting TKI Resistance in Myeloid Leukemias

41. Data from UBR5 Is Coamplified with MYC in Breast Tumors and Encodes an Ubiquitin Ligase That Limits MYC-Dependent Apoptosis

43. Data from CIP2A Is Associated with Human Breast Cancer Aggressivity

44. Data from CIP2A Interacts with TopBP1 and Drives Basal-Like Breast Cancer Tumorigenesis

45. Supplementary Data from CIP2A Interacts with TopBP1 and Drives Basal-Like Breast Cancer Tumorigenesis

46. Data from PP2A Inhibitor PME-1 Drives Kinase Inhibitor Resistance in Glioma Cells

47. Data from Discovery of a Novel CIP2A Variant (NOCIVA) with Clinical Relevance in Predicting TKI Resistance in Myeloid Leukemias

48. Supplementary Table 1 from Chk1 Targeting Reactivates PP2A Tumor Suppressor Activity in Cancer Cells

49. Supplementary Figure 2 from Chk1 Targeting Reactivates PP2A Tumor Suppressor Activity in Cancer Cells

50. Data from PME-1 Protects Extracellular Signal-Regulated Kinase Pathway Activity from Protein Phosphatase 2A–Mediated Inactivation in Human Malignant Glioma

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