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1. Fine-mapping analysis including over 254,000 East Asian and European descendants identifies 136 putative colorectal cancer susceptibility genes

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3. Runx2 transcriptome of prostate cancer cells: insights into invasiveness and bone metastasis

4. Identification of novel androgen receptor target genes in prostate cancer

5. Deciphering colorectal cancer genetics through multi-omic analysis of 100,204 cases and 154,587 controls of European and east Asian ancestries

7. Functional analysis and fine mapping of the 9p22.2 ovarian cancer susceptibility locus

8. Novel Common Genetic Susceptibility Loci for Colorectal Cancer

9. Author Correction: Deciphering colorectal cancer genetics through multi-omic analysis of 100,204 cases and 154,587 controls of European and east Asian ancestries

10. Prostate Cancer Susceptibility in Men of African Ancestry at 8q24

11. Fine-mapping analysis including over 254 000 East Asian and European descendants identifies 136 putative colorectal cancer susceptibility genes

13. The PsychENCODE project

14. Corrigendum: genome-wide association study of colorectal cancer identifies six new susceptibility loci.

15. Integration of multiethnic fine-mapping and genomic annotation to prioritize candidate functional SNPs at prostate cancer susceptibility regions

16. Erratum: Corrigendum: Genome-wide association study of colorectal cancer identifies six new susceptibility loci

17. Genome-wide association study of colorectal cancer identifies six new susceptibility loci.

18. Cell-type-specific enrichment of risk-associated regulatory elements at ovarian cancer susceptibility loci

20. A meta-analysis identifies new loci associated with body mass index in individuals of African ancestry

21. GWAS meta-analysis and replication identifies three new susceptibility loci for ovarian cancer.

22. Identification of Genetic Susceptibility Loci for Colorectal Tumors in a Genome-Wide Meta-analysis

23. GWAS meta-analysis and replication identifies three new susceptibility loci for ovarian cancer.

24. Identification and molecular characterization of a new ovarian cancer susceptibility locus at 17q21.31

25. A meta-analysis of genome-wide association studies of breast cancer identifies two novel susceptibility loci at 6q14 and 20q11

26. Chromatin accessibility reveals insights into androgen receptor activation and transcriptional specificity

30. Supplementary Table S3 from Characterizing Genetic Susceptibility to Breast Cancer in Women of African Ancestry

31. Supplementary Methods and Tables from The OncoArray Consortium: A Network for Understanding the Genetic Architecture of Common Cancers

32. Supplementary Fig Leg from Characterizing Genetic Susceptibility to Breast Cancer in Women of African Ancestry

33. Supplementary Table 5 from Functional Analysis and Fine Mapping of the 9p22.2 Ovarian Cancer Susceptibility Locus

34. Supplementary Figures 1-4 and extended methods from Functional Analysis and Fine Mapping of the 9p22.2 Ovarian Cancer Susceptibility Locus

35. Supplementary Table 3 from Functional Analysis and Fine Mapping of the 9p22.2 Ovarian Cancer Susceptibility Locus

36. Supplementary Figure S2 from Characterizing Genetic Susceptibility to Breast Cancer in Women of African Ancestry

37. Data from Functional Analysis and Fine Mapping of the 9p22.2 Ovarian Cancer Susceptibility Locus

38. Supplementary Table 1 from Functional Analysis and Fine Mapping of the 9p22.2 Ovarian Cancer Susceptibility Locus

39. Supplementary Table 2 from Functional Analysis and Fine Mapping of the 9p22.2 Ovarian Cancer Susceptibility Locus

40. Supplementary Table 4 from Functional Analysis and Fine Mapping of the 9p22.2 Ovarian Cancer Susceptibility Locus

41. Data from Androgen Receptor Inhibits Estrogen Receptor-α Activity and Is Prognostic in Breast Cancer

42. Data from Control of Androgen Receptor Signaling in Prostate Cancer by the Cochaperone Small Glutamine–Rich Tetratricopeptide Repeat Containing Protein α

43. Supplementary Tables 1-3 from Androgen Receptor Inhibits Estrogen Receptor-α Activity and Is Prognostic in Breast Cancer

44. Supplementary Data 1-4 from Control of Androgen Receptor Signaling in Prostate Cancer by the Cochaperone Small Glutamine–Rich Tetratricopeptide Repeat Containing Protein α

46. Deciphering colorectal cancer genetics through multi-omic analysis of 100,204 cases and 154,587 controls of European and east Asian ancestries