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2. Table S2 from Oncogenic Transformation Drives DNA Methylation Loss and Transcriptional Activation at Transposable Element Loci

3. Figure S1 from Oncogenic Transformation Drives DNA Methylation Loss and Transcriptional Activation at Transposable Element Loci

4. Data from Oncogenic Transformation Drives DNA Methylation Loss and Transcriptional Activation at Transposable Element Loci

5. Supplemental Figure Legends from Oncogenic Transformation Drives DNA Methylation Loss and Transcriptional Activation at Transposable Element Loci

6. Oncogenic Transformation Drives DNA Methylation Loss and Transcriptional Activation at Transposable Element Loci

7. Supplementary Figure from Epigenetic Therapies in Ovarian Cancer Alter Repetitive Element Expression in a TP53-Dependent Manner

8. Supplementary Table from Epigenetic Therapies in Ovarian Cancer Alter Repetitive Element Expression in a TP53-Dependent Manner

9. Data from Epigenetic Therapies in Ovarian Cancer Alter Repetitive Element Expression in a TP53-Dependent Manner

10. Supplementary Data from Epigenetic Therapies in Ovarian Cancer Alter Repetitive Element Expression in a TP53-Dependent Manner

12. Inhibiting DNA methylation and RNA editing upregulates immunogenic RNA to transform the tumor microenvironment and prolong survival in ovarian cancer

13. Inhibition of DNMTs and RNA editing increases immunogenic transposable element RNA to reduce tumor burden and prolong survival in a murine ovarian cancer model

14. Epigenetic Therapies in Ovarian Cancer Alter Repetitive Element Expression in a TP53-Dependent Manner

16. Mitochondrial Enzymes of the Urea Cycle Cluster at the Inner Mitochondrial Membrane

17. Mitochondrial Enzymes of the Urea Cycle Cluster at the Inner Mitochondrial Membrane

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