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2. Prostate Cancer Transcriptomic Regulation by the Interplay of Germline Risk Alleles, Somatic Mutations, and 3D Genomic Architecture.

5. The landscape of RNA polymerase II associated chromatin interactions in prostate cancer

6. NLRP12 downregulates the Wnt/[beta]-catenin pathway via interaction with STK38 to suppress colorectal cancer

7. Genome-wide germline correlates of the epigenetic landscape of prostate cancer

8. Androgen Receptor Variants Mediate DNA Repair after Prostate Cancer Irradiation

11. FOXA2 suppresses endometrial carcinogenesis and epithelial-mesenchymal transition by regulating enhancer activity

13. Data from Androgen Receptor Variants Mediate DNA Repair after Prostate Cancer Irradiation

14. Figure S1 from Androgen Receptor Variants Mediate DNA Repair after Prostate Cancer Irradiation

15. Supplementary Methods from Targeting Bromodomain and Extra-Terminal (BET) Family Proteins in Castration-Resistant Prostate Cancer (CRPC)

16. Figure Legends from Targeting Bromodomain and Extra-Terminal (BET) Family Proteins in Castration-Resistant Prostate Cancer (CRPC)

17. Supplementary Figures from Targeting Bromodomain and Extra-Terminal (BET) Family Proteins in Castration-Resistant Prostate Cancer (CRPC)

18. Supplementary Tables from Targeting Bromodomain and Extra-Terminal (BET) Family Proteins in Castration-Resistant Prostate Cancer (CRPC)

20. Germline determinants of the prostate tumor genome

21. Targeting ESR1 mutation–induced transcriptional addiction in breast cancer with BET inhibition

23. Targeting radioresistance and replication fork stability in prostate cancer

24. Genome-wide germline correlates of the epigenetic landscape of prostate cancer

25. Targeting Bromodomain and Extra-Terminal (BET) Family Proteins in Castration-Resistant Prostate Cancer (CRPC)

26. BRD4 Promotes DNA Repair and Mediates the Formation of TMPRSS2-ERG Gene Rearrangements in Prostate Cancer

27. Inflammation-Induced Oxidative Stress Mediates Gene Fusion Formation in Prostate Cancer

29. Abstract 2155: The origins and functional consequences of ETS gene fusions in prostate cancer

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