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

2. Association between circulating inflammatory markers and adult cancer risk: a Mendelian randomization analysis

3. Human leukocyte antigen-DQA1*04:01 and rs2040406 variants are associated with elevated risk of childhood Burkitt lymphoma

4. Mosaic chromosomal alterations in peripheral blood leukocytes of children in sub-Saharan Africa

5. Sickle cell allele HBB‐rs334(T) is associated with decreased risk of childhood Burkitt lymphoma in East Africa

6. Genome-wide association study of prostate-specific antigen levels in 392,522 men identifies new loci and improves cross-ancestry prediction

7. JAK2V617F Mutation and Associated Chromosomal Alterations in Primary and Secondary Myelofibrosis and Post-HCT Outcomes

8. Heterogeneous genetic architectures and evolutionary genomics of prostate cancer in Sub-Saharan Africa

10. Combining Asian and European genome-wide association studies of colorectal cancer improves risk prediction across racial and ethnic populations

11. Health Diplomacy in Action: The Cancer Legacy of the Good Friday Agreement

12. Identification of novel genetic loci for risk of multiple myeloma by functional annotation

13. State of the science and future directions for research on HIV and cancer: Summary of a joint workshop sponsored by IARC and NCI

14. Shared and distinct genetic etiologies for different types of clonal hematopoiesis

15. Correction: Distinct germline genetic susceptibility profiles identified for common non-Hodgkin lymphoma subtypes

16. Supplementary Figure S2 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

17. Supplementary Table S6 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

18. Supplementary Table S8 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

19. Supplementary Table S4 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

20. Supplementary Table S3 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

21. Supplementary Table S1 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

22. Supplementary Table S8 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

23. Supplementary Table S10 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

24. Supplementary Table S2 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

25. Data from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

26. Supplementary Table S4 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

27. Supplementary Table S5 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

28. Supplementary Table S5 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

29. Supplementary Figure S1 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

30. Supplementary Figure S2 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

31. Supplementary Table S6 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

32. Supplementary Figure S1 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

33. Supplementary Table S7 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

34. Data from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

35. Supplementary Table S3 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

36. Supplementary Table S7 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

37. Supplementary Table S9 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

38. Supplementary Table S10 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

39. Supplementary Table S9 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

40. Supplementary Table S1 from Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

42. Genetically inferred birthweight, height, and puberty timing and risk of osteosarcoma

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

44. Evidence of Novel Susceptibility Variants for Prostate Cancer and a Multiancestry Polygenic Risk Score Associated with Aggressive Disease in Men of African Ancestry

46. Contributors

47. Probing the diabetes and colorectal cancer relationship using gene – environment interaction analyses

48. Genetic Susceptibility to Nonalcoholic Fatty Liver Disease and Risk for Pancreatic Cancer: Mendelian Randomization

49. Genetically adjusted PSA levels for prostate cancer screening

50. Genome-wide association study of lung adenocarcinoma in East Asia and comparison with a European population

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