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3. Targeting RET Kinase in Neuroendocrine Prostate Cancer

4. The DNA methylation landscape of advanced prostate cancer

5. Diverse AR Gene Rearrangements Mediate Resistance to Androgen Receptor Inhibitors in Metastatic Prostate Cancer

9. Comparative analyses of gene networks mediating cancer metastatic potentials across lineage types.

11. Opposing transcriptional programs of KLF5 and AR emerge during therapy for advanced prostate cancer

14. Figure S3 from Expression and Therapeutic Targeting of TROP-2 in Treatment-Resistant Prostate Cancer

16. Expression and Therapeutic Targeting of TROP-2 in Treatment-Resistant Prostate Cancer

17. Data from Bypassing Drug Resistance Mechanisms of Prostate Cancer with Small Molecules that Target Androgen Receptor–Chromatin Interactions

18. Supplementary Methods, Supplementary Figures 1-6 from Targeting RET Kinase in Neuroendocrine Prostate Cancer

19. Table S1 and Figure S1-S4 from Bypassing Drug Resistance Mechanisms of Prostate Cancer with Small Molecules that Target Androgen Receptor–Chromatin Interactions

20. Supplementary Tables 1-8 from Targeting RET Kinase in Neuroendocrine Prostate Cancer

21. Supplementary Data 2 from Diverse AR Gene Rearrangements Mediate Resistance to Androgen Receptor Inhibitors in Metastatic Prostate Cancer

23. Supplementary Data 4 from Diverse AR Gene Rearrangements Mediate Resistance to Androgen Receptor Inhibitors in Metastatic Prostate Cancer

24. Data from Diverse AR Gene Rearrangements Mediate Resistance to Androgen Receptor Inhibitors in Metastatic Prostate Cancer

26. Supplementary Data 3 from Diverse AR Gene Rearrangements Mediate Resistance to Androgen Receptor Inhibitors in Metastatic Prostate Cancer

27. Supplementary Methods, Supplementary References, Supplementary Tables 1-3, Supplementary Figures 1-4 from Androgen Receptor Variant AR-V9 Is Coexpressed with AR-V7 in Prostate Cancer Metastases and Predicts Abiraterone Resistance

29. Supplementary Data from Diverse AR Gene Rearrangements Mediate Resistance to Androgen Receptor Inhibitors in Metastatic Prostate Cancer

30. Supplementary figures and figure legends from Targeting a Single Alternative Polyadenylation Site Coordinately Blocks Expression of Androgen Receptor mRNA Splice Variants in Prostate Cancer

31. Supplementary Data 1 from Diverse AR Gene Rearrangements Mediate Resistance to Androgen Receptor Inhibitors in Metastatic Prostate Cancer

37. Therapeutic targeting of BET bromodomain proteins in castration-resistant prostate cancer

38. Histone Deacetylase Sirtuin 1 Promotes Loss of Primary Cilia in Cholangiocarcinoma

41. Additional file 1 of LncGSEA: a versatile tool to infer lncRNA associated pathways from large-scale cancer transcriptome sequencing data

44. Identification of mutations that cooperate with defects in B cell transcription factors to initiate leukemia

47. RAS internal tandem duplication disrupts GTPase-activating protein (GAP) binding to activate oncogenic signaling

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