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

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

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

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

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

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

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

9. Data from Early Tumor Progression Associated with Enhanced EGFR Signaling with Bortezomib, Cetuximab, and Radiotherapy for Head and Neck Cancer

10. Supplementary Methods, Table 1 from Early Tumor Progression Associated with Enhanced EGFR Signaling with Bortezomib, Cetuximab, and Radiotherapy for Head and Neck Cancer

14. Germline determinants of the prostate tumor genome

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

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

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

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

23. The effect of erlotinib on EGFR and downstream signaling in oral cavity squamous cell carcinoma

24. Effect of erlotinib on epidermal growth factor receptor and downstream signaling in oral cavity squamous cell carcinoma

25. Destabilization of the Epidermal Growth Factor Receptor (EGFR) by a Peptide That Inhibits EGFR Binding to Heat Shock Protein 90 and Receptor Dimerization

26. Effect of erlotinib on epidermal growth factor receptor and downstream signaling in oral cavity squamous cell carcinoma

27. Wild-type EGFR Is Stabilized by Direct Interaction with HSP90 in Cancer Cells and Tumors

28. Early Tumor Progression Associated with Enhanced EGFR Signaling with Bortezomib, Cetuximab, and Radiotherapy for Head and Neck Cancer

30. Abstract 5451: Role of novel peptides targeting Hsp90-EGFR interaction to promote EGFR degradation and cisplatin cytotoxicity in head and neck cancer

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