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1. Supplementary Table 1 from Activin Type II Receptor Restoration in ACVR2-Deficient Colon Cancer Cells Induces Transforming Growth Factor-β Response Pathway Genes

2. Supplementary Figure 1 Legend from Activin Type II Receptor Restoration in ACVR2-Deficient Colon Cancer Cells Induces Transforming Growth Factor-β Response Pathway Genes

3. Data from Activin Type II Receptor Restoration in ACVR2-Deficient Colon Cancer Cells Induces Transforming Growth Factor-β Response Pathway Genes

4. Supplementary Methods section from Identification of Genes Uniquely Involved in Frequent Microsatellite Instability Colon Carcinogenesis by Expression Profiling Combined with Epigenetic Scanning

5. Supplementary Methods from Activin Type II Receptor Restoration in ACVR2-Deficient Colon Cancer Cells Induces Transforming Growth Factor-β Response Pathway Genes

6. Supplementary Table 1 from Identification of Genes Uniquely Involved in Frequent Microsatellite Instability Colon Carcinogenesis by Expression Profiling Combined with Epigenetic Scanning

7. Supplementary Table 2 from Activin Type II Receptor Restoration in ACVR2-Deficient Colon Cancer Cells Induces Transforming Growth Factor-β Response Pathway Genes

8. Supplementary Table 2 from Identification of Genes Uniquely Involved in Frequent Microsatellite Instability Colon Carcinogenesis by Expression Profiling Combined with Epigenetic Scanning

9. Data from Identification of Genes Uniquely Involved in Frequent Microsatellite Instability Colon Carcinogenesis by Expression Profiling Combined with Epigenetic Scanning

10. Supplementary Figure 1 from Activin Type II Receptor Restoration in ACVR2-Deficient Colon Cancer Cells Induces Transforming Growth Factor-β Response Pathway Genes

15. Molecular Phenotype of Inflammatory Bowel Disease-Associated Neoplasms With Microsatellite Instability

16. Activin Type II Receptor Restoration inACVR2 -Deficient Colon Cancer Cells Induces Transforming Growth Factor-β Response Pathway Genes

17. Identification of Genes Uniquely Involved in Frequent Microsatellite Instability Colon Carcinogenesis by Expression Profiling Combined with Epigenetic Scanning

18. An Unsupervised Approach to Identify Molecular Phenotypic Components Influencing Breast Cancer Features

19. Esophagin and proliferating cell nuclear antigen (PCNA) are biomarkers of human esophageal neoplastic progression

21. Integrated gene expression profiling and in silico epigenomic scanning to identify genes involved in microsatellite instability status of colorectal carcinoma

22. Application of cDNA microarrays to generate a molecular taxonomy capable of distinguishing between colon cancer and normal colon.

24. Activin type II receptor restoration in ACVR2-deficient colon cancer cells induces transforming growth factor-beta response pathway genes.

25. The impact of microsatellite instability on the molecular phenotype of colorectal tumors.

26. Aberrant methylation of the HPP1 gene in ulcerative colitis-associated colorectal carcinoma.

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