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1. Genomic evolution shapes prostate cancer disease type

2. Microbiomes of Urine and the Prostate Are Linked to Human Prostate Cancer Risk Groups

3. Rare Germline Variants Are Associated with Rapid Biochemical Recurrence After Radical Prostate Cancer Treatment: A Pan Prostate Cancer Group Study

4. The architecture of clonal expansions in morphologically normal tissue from cancerous and non-cancerous prostates

6. Sequencing of prostate cancers identifies new cancer genes, routes of progression and drug targets

11. Analysis of the genetic phylogeny of multifocal prostate cancer identifies multiple independent clonal expansions in neoplastic and morphologically normal prostate tissue

12. DESNT: A Poor Prognosis Category of Human Prostate Cancer

15. Supplementary Figure 2 from SOX9 Elevation in the Prostate Promotes Proliferation and Cooperates with PTEN Loss to Drive Tumor Formation

16. Supplementary Figure 1 from SOX9 Elevation in the Prostate Promotes Proliferation and Cooperates with PTEN Loss to Drive Tumor Formation

17. Supplementary Tables 2 and 3 from A Gene Expression Signature Associated with Metastatic Outcome in Human Leiomyosarcomas

18. Data from SOX9 Elevation in the Prostate Promotes Proliferation and Cooperates with PTEN Loss to Drive Tumor Formation

19. Supplementary Figure Legends 1-5 from Characterization of ERG, AR and PTEN Gene Status in Circulating Tumor Cells from Patients with Castration-Resistant Prostate Cancer

20. Supplementary Figure 3 from SOX9 Elevation in the Prostate Promotes Proliferation and Cooperates with PTEN Loss to Drive Tumor Formation

21. Supplementary Figure 1 from A Gene Expression Signature Associated with Metastatic Outcome in Human Leiomyosarcomas

22. Supplementary Tables 1-4 from Characterization of ERG, AR and PTEN Gene Status in Circulating Tumor Cells from Patients with Castration-Resistant Prostate Cancer

23. Data from Characterization of ERG, AR and PTEN Gene Status in Circulating Tumor Cells from Patients with Castration-Resistant Prostate Cancer

24. Supplementary Figure 4 from Characterization of ERG, AR and PTEN Gene Status in Circulating Tumor Cells from Patients with Castration-Resistant Prostate Cancer

25. Supplementary Figure 5 from Characterization of ERG, AR and PTEN Gene Status in Circulating Tumor Cells from Patients with Castration-Resistant Prostate Cancer

26. Supplementary Figures 1-3 from Characterization of ERG, AR and PTEN Gene Status in Circulating Tumor Cells from Patients with Castration-Resistant Prostate Cancer

27. Supplementary Tables 5-8 from Characterization of ERG, AR and PTEN Gene Status in Circulating Tumor Cells from Patients with Castration-Resistant Prostate Cancer

28. Supplementary Table 1 from A Gene Expression Signature Associated with Metastatic Outcome in Human Leiomyosarcomas

33. A deep learning system accurately classifies primary and metastatic cancers using passenger mutation patterns

34. The landscape of viral associations in human cancers

35. Combined burden and functional impact tests for cancer driver discovery using DriverPower

36. Integrative pathway enrichment analysis of multivariate omics data

37. Pathway and network analysis of more than 2500 whole cancer genomes

38. Divergent mutational processes distinguish hypoxic and normoxic tumours

39. Genomic footprints of activated telomere maintenance mechanisms in cancer

41. Rare germline variants are associated with rapid biochemical recurrence after radical prostate cancer treatment : a PPCG study

42. Rare Germline Variants Are Associated with Rapid Biochemical Recurrence After Radical Prostate Cancer Treatment:A Pan Prostate Cancer Group Study

44. The evolutionary history of lethal metastatic prostate cancer

46. Additional file 2 of The architecture of clonal expansions in morphologically normal tissue from cancerous and non-cancerous prostates

49. Building Data-Driven Pathways From Routinely Collected Hospital Data: A Case Study on Prostate Cancer

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