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1. Characterizing prostate cancer risk through multi-ancestry genome-wide discovery of 187 novel risk variants.

3. Prevalence of the HOXB13 G84E germline mutation in British men and correlation with prostate cancer risk, tumour characteristics and clinical outcomes

4. Publisher Correction: Trans-ancestry genome-wide association meta-analysis of prostate cancer identifies new susceptibility loci and informs genetic risk prediction (Nature Genetics, (2021), 53, 1, (65-75), 10.1038/s41588-020-00748-0).

5. Rare Germline Variants in ATM Predispose to Prostate Cancer: A PRACTICAL Consortium Study.

6. Trans-ancestry genome-wide association meta-analysis of prostate cancer identifies new susceptibility loci and informs genetic risk prediction.

7. Germline Sequencing DNA Repair Genes in 5545 Men with Aggressive and Nonaggressive Prostate Cancer.

8. Trans-ancestry genome-wide association meta-analysis of prostate cancer identifies new susceptibility loci and informs genetic risk prediction

9. Rare Germline Variants in ATM Predispose to Prostate Cancer: A PRACTICAL Consortium Study

10. Publisher Correction: Trans-ancestry genome-wide association meta-analysis of prostate cancer identifies new susceptibility loci and informs genetic risk prediction

11. Trans-ancestry genome-wide association meta-analysis of prostate cancer identifies new susceptibility loci and informs genetic risk prediction.

12. Re: Germline BRCA Mutations are Associated with Higher Risk of Nodal Involvement, Distant Metastasis, and Poor Survival Outcomes in Prostate Cancer

13. Germline sequencing DNA repair genes in 5,545 men with aggressive and non-aggressive prostate cancer.

14. Erratum to: Germline variation at 8q24 and prostate cancer risk in men of European ancestry (Nature Communications, (2018), 9, 1, (4616), 10.1038/s41467-018-06863-1)

15. Rare germline variants in DNA repair genes and the angiogenesis pathway predispose prostate cancer patients to develop metastatic disease

16. Germline DNA repair gene mutations in young-onset prostate cancer cases in the UK: evidence for a more extensive genetic panel

17. Correction to: Association analyses of more than 140,000 men identify 63 new prostate cancer susceptibility loci (Nature Genetics, (2018), 50, 7, (928-936), 10.1038/s41588-018-0142-8)

18. Germline variation at 8q24 and prostate cancer risk in men of European ancestry (vol 9, 4616, 2018)

19. Correction to: Association analyses of more than 140,000 men identify 63 new prostate cancer susceptibility loci (Nature Genetics, (2018), 50, 7, (928-936), 10.1038/s41588-018-0142-8).

20. Germline variation at 8q24 and prostate cancer risk in men of European ancestry.

21. Erratum to: Germline variation at 8q24 and prostate cancer risk in men of European ancestry (Nature Communications, (2018), 9, 1, (4616), 10.1038/s41467-018-06863-1).

22. Author Correction: Association analyses of more than 140,000 men identify 63 new prostate cancer susceptibility loci (Nature Genetics, (2018), 50, 7, (928-936), 10.1038/s41588-018-0142-8).

23. Germline variation at 8q24 and prostate cancer risk in men of European ancestry

24. Fine-mapping of prostate cancer susceptibility loci in a large meta-analysis identifies candidate causal variants

25. Prostate-specific antigen velocity in a prospective prostate cancer screening study of men with genetic predisposition (vol 118, pg 266, 2018)

26. Prostate-specific antigen velocity in a prospective prostate cancer screening study of men with genetic predisposition

27. Association analyses of more than 140,000 men identify 63 new prostate cancer susceptibility loci.

28. Fine-mapping of prostate cancer susceptibility loci in a large meta-analysis identifies candidate causal variants.

29. Prostate-specific antigen velocity in a prospective prostate cancer screening study of men with genetic predisposition.

30. Germline variation at 8q24 and prostate cancer risk in men of European ancestry

31. Gene and pathway level analyses of germline DNA-repair gene variants and prostate cancer susceptibility using the iCOGS-genotyping array.

32. Prostate-specific antigen velocity in a prospective prostate cancer screening study of men with genetic predisposition (vol 118, pg 266, 2018)

33. Association analyses of more than 140,000 men identify 63 new prostate cancer susceptibility loci

34. Prostate-specific antigen velocity in a prospective prostate cancer screening study of men with genetic predisposition

35. Fine-mapping identifies multiple prostate cancer risk loci at 5p15, one of which associates with TERT expression

36. Gene and pathway level analyses of germline DNA-repair gene variants and prostate cancer susceptibility using the iCOGS-genotyping array

37. Atlas of prostate cancer heritability in European and African-American men pinpoints tissue-specific regulation

39. Risk Analysis of Prostate Cancer in PRACTICAL, a Multinational Consortium, Using 25 Known Prostate Cancer Susceptibility Loci

40. Pubertal development and prostate cancer risk: Mendelian randomization study in a population-based cohort

41. The PROFILE Feasibility Study: Targeted Screening of Men With a Family History of Prostate Cancer

42. Multiple novel prostate cancer susceptibility signals identified by fine-mapping of known risk loci among Europeans

43. 2574 Prostate-Specific Antigen velocity as a predictive biomarker in a prospective prostate cancer screening study of men with genetic predisposition

44. Prevalence of theHOXB13 G84E germline mutation in British men and correlation with prostate cancer risk, tumour characteristics and clinical outcomes

45. A meta-analysis of 87,040 individuals identifies 23 new susceptibility loci for prostate cancer

46. Fine-Mapping the HOXB Region Detects Common Variants Tagging a Rare Coding Allele: Evidence for Synthetic Association in Prostate Cancer

48. Prevalence of Hoxb13G84E Germline Mutation in Uk Prostate Cancer Cases; Correlation with Tumour Characteristics and Outcomes

49. Fine-mapping identifies multiple prostate cancer risk loci at 5p15, one of which associates with TERT expression

50. Germline BRCA1 mutations increase prostate cancer risk.

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