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1. Analysis of Xq27-28 linkage in the international consortium for prostate cancer genetics (ICPCG) families

3. Supplementary Table 3 from Refining the Prostate Cancer Genetic Association within the JAZF1 Gene on Chromosome 7p15.2

4. Supplementary Table 2A from Refining the Prostate Cancer Genetic Association within the JAZF1 Gene on Chromosome 7p15.2

5. Supplementary Tables S6 and S7 from Germline Variants in Asporin Vary by Race, Modulate the Tumor Microenvironment, and Are Differentially Associated with Metastatic Prostate Cancer

6. Supplementary Table 1 from Refining the Prostate Cancer Genetic Association within the JAZF1 Gene on Chromosome 7p15.2

7. Supplementary Table Legends from Refining the Prostate Cancer Genetic Association within the JAZF1 Gene on Chromosome 7p15.2

8. Data from Refining the Prostate Cancer Genetic Association within the JAZF1 Gene on Chromosome 7p15.2

9. Supplementary Figure S1 from Germline Variants in Asporin Vary by Race, Modulate the Tumor Microenvironment, and Are Differentially Associated with Metastatic Prostate Cancer

10. Supplementary Figure 1 from Germ-Line Mutation of NKX3.1 Cosegregates with Hereditary Prostate Cancer and Alters the Homeodomain Structure and Function

11. Supplementary Figure 1 from A Novel Prostate Cancer Susceptibility Locus at 19q13

12. Supplementary Table 3 from A Novel Prostate Cancer Susceptibility Locus at 19q13

13. Data from A Novel Prostate Cancer Susceptibility Locus at 19q13

14. Data from Association of a Germ-Line Copy Number Variation at 2p24.3 and Risk for Aggressive Prostate Cancer

15. Supplementary Table 2 from A Novel Prostate Cancer Susceptibility Locus at 19q13

16. Supplementary Figure 1 from Association of a Germ-Line Copy Number Variation at 2p24.3 and Risk for Aggressive Prostate Cancer

17. Supplementary Figure 2 from Association of a Germ-Line Copy Number Variation at 2p24.3 and Risk for Aggressive Prostate Cancer

18. Data from Sequence Variants at 22q13 Are Associated with Prostate Cancer Risk

19. Supplementary Table 4 from A Novel Prostate Cancer Susceptibility Locus at 19q13

20. Supplementary Table 1 from A Novel Prostate Cancer Susceptibility Locus at 19q13

21. Supplementary Methods, Tables and Figures from Sequence Variants at 22q13 Are Associated with Prostate Cancer Risk

22. Major Susceptibility Locus for Prostate Cancer on Chromosome 1 Suggested by a Genome-Wide Search

23. Genome-wide association of familial prostate cancer cases identifies evidence for a rare segregating haplotype at 8q24.21

25. Association analysis of 9,560 prostate cancer cases from the International Consortium of Prostate Cancer Genetics confirms the role of reported prostate cancer associated SNPs for familial disease

26. HOXB13 is a susceptibility gene for prostate cancer: results from the International Consortium for Prostate Cancer Genetics (ICPCG)

27. Validation of prostate cancer risk-related loci identified from genome-wide association studies using family-based association analysis: evidence from the International Consortium for Prostate Cancer Genetics (ICPCG)

29. Two-locus genome-wide linkage scan for prostate cancer susceptibility genes with an interaction effect

31. A combined genomewide linkage scan of 1,233 families for prostate cancer-susceptibility genes conducted by the International Consortium for Prostate Cancer Genetics

34. Linkage of prostate cancer susceptibility loci to chromosome 1

35. Chromosomes 4 and 8 implicated in a genome wide SNP linkage scan of 762 prostate cancer families collected by the ICPCG

36. Germline Mutations in HOXB13 and Prostate-Cancer Risk

38. Fine mapping of a region of chromosome 11q13 reveals multiple independent loci associated with risk of prostate cancer

39. Genome-Wide Linkage Analysis of 1,233 Prostate Cancer Pedigrees From the International Consortium for Prostate Cancer Genetics Using Novel sum LINK and sum LOD Analyses

41. Fine mapping association study and functional analysis implicate a SNP in MSMB at 10q11 as a causal variant for prostate cancer risk

45. Two Genome-wide Association Studies of Aggressive Prostate Cancer Implicate Putative Prostate Tumor Suppressor Gene DAB2IP

46. Association Between Two Unlinked Loci at 8q24 and Prostate Cancer Risk Among European Americans

47. Compelling evidence for a prostate cancer gene at 22q12.3 by the International Consortium for Prostate Cancer Genetics

49. Characteristics of prostate cancer in families potentially linked to the hereditary prostate cancer 1 (HPC1) locus

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