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53. Evaluating approaches for constructing polygenic risk scores for prostate cancer in men of African and European ancestry

54. Aurora- A/STK15 T + 91A is a general low penetrance cancer susceptibility gene: a meta-analysis of multiple cancer types

55. Aurora-A/STK15 T+91A is a general low penetrance cancer susceptibility gene: a meta-analysis of multiple cancer types.

57. Modeling Temporal Aspects of an Exposure

60. Abstract 3508: Association between clonal hematopoiesis and risk of prostate cancer in a large sample of African ancestry men

61. Abstract 1182: Association of prostate cancer candidate genes with overall and aggressive prostate cancer in men of African ancestry

62. Data from A Large-Scale Analysis of Genetic Variants within Putative miRNA Binding Sites in Prostate Cancer

63. Supplementary Figure 1 from A Large-Scale Analysis of Genetic Variants within Putative miRNA Binding Sites in Prostate Cancer

64. Supplementary Methods, Figures S1 - S3 from Genome-Wide Meta-Analyses of Breast, Ovarian, and Prostate Cancer Association Studies Identify Multiple New Susceptibility Loci Shared by at Least Two Cancer Types

65. Supplementary Tables S1 - S10 from Genome-Wide Meta-Analyses of Breast, Ovarian, and Prostate Cancer Association Studies Identify Multiple New Susceptibility Loci Shared by at Least Two Cancer Types

66. Supp. Table S22 from Genetic Mechanisms of Immune Evasion in Colorectal Cancer

67. Data from Genetic Mechanisms of Immune Evasion in Colorectal Cancer

68. Supp. Tables S1, S3-S15, S20, and S23 from Genetic Mechanisms of Immune Evasion in Colorectal Cancer

69. Supplementary Table 1 from A Large-Scale Analysis of Genetic Variants within Putative miRNA Binding Sites in Prostate Cancer

70. Supplementary Acknowledgments from Genome-Wide Meta-Analyses of Breast, Ovarian, and Prostate Cancer Association Studies Identify Multiple New Susceptibility Loci Shared by at Least Two Cancer Types

71. Supp. Tables S16-S19 from Genetic Mechanisms of Immune Evasion in Colorectal Cancer

72. Data from Genome-Wide Meta-Analyses of Breast, Ovarian, and Prostate Cancer Association Studies Identify Multiple New Susceptibility Loci Shared by at Least Two Cancer Types

73. Supplementary Tables 2 - 5, Figures 2 - 3 from A Large-Scale Analysis of Genetic Variants within Putative miRNA Binding Sites in Prostate Cancer

74. Supplementary Grant Support from Genome-Wide Meta-Analyses of Breast, Ovarian, and Prostate Cancer Association Studies Identify Multiple New Susceptibility Loci Shared by at Least Two Cancer Types

75. Supp. Figures and Legends from Genetic Mechanisms of Immune Evasion in Colorectal Cancer

77. Evaluating approaches for constructing polygenic risk scores for prostate cancer in men of African and European ancestry

79. Publisher Correction: Shared heritability and functional enrichment across six solid cancers

80. Shared heritability and functional enrichment across six solid cancers

81. Germline Genetic Variants Associated with Somatic TMPRSS2:ERG Fusion Status in Prostate Cancer: A Genome-Wide Association Study.

82. Supplementary notes from Genome-Wide Association Study of Prostate Cancer–Specific Survival

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

84. Supplementary Data from Evaluation of 8q24 and 17q Risk Loci and Prostate Cancer Mortality

85. Data from Genome-Wide Association Study of Prostate Cancer–Specific Survival

86. Supplementary Table 1 from Genetic Variants in the LEPR, CRY1, RNASEL, IL4, and ARVCF Genes Are Prognostic Markers of Prostate Cancer-Specific Mortality

88. Data from Genetic Variants in the LEPR, CRY1, RNASEL, IL4, and ARVCF Genes Are Prognostic Markers of Prostate Cancer-Specific Mortality

91. Supplementary Figure 1 from Risk Analysis of Prostate Cancer in PRACTICAL, a Multinational Consortium, Using 25 Known Prostate Cancer Susceptibility Loci

92. Supplementary Tables 1-8 from Risk Analysis of Prostate Cancer in PRACTICAL, a Multinational Consortium, Using 25 Known Prostate Cancer Susceptibility Loci

94. Data from Validation of Genome-Wide Prostate Cancer Associations in Men of African Descent

95. Supplementary Table 2 from Germline Missense Variants in the BTNL2 Gene Are Associated with Prostate Cancer Susceptibility

98. Supplementary Table 3 from Germline Missense Variants in the BTNL2 Gene Are Associated with Prostate Cancer Susceptibility

100. Supplementary Figure 1 from Germline Missense Variants in the BTNL2 Gene Are Associated with Prostate Cancer Susceptibility

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