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1. The evolution of lung adenocarcinoma precursors is associated with chromosomal instability and transition from innate to adaptive immune response/evasion

2. The Complexity of Tobacco Smoke-Induced Mutagenesis in Head and Neck Cancer

3. Integrated mutational landscape analysis of poorly differentiated high-grade neuroendocrine carcinoma of the uterine cervix

4. APOBEC shapes tumor evolution and age at onset of lung cancer in smokers

5. The Mutographs biorepository: A unique genomic resource to study cancer around the world

6. Accelerated Hematopoietic Stem Cell Aging in Space

9. Breakage fusion bridge cycles drive high oncogene copy number, but not intratumoral genetic heterogeneity or rapid cancer genome change

10. Assigning mutational signatures to individual samples and individual somatic mutations with SigProfilerAssignment

11. Nivolumab for Patients With High-Risk Oral Leukoplakia

14. APOBEC3B regulates R-loops and promotes transcription-associated mutagenesis in cancer

17. Assigning mutational signatures to individual samples and individual somatic mutations with SigProfilerAssignment

19. Germline modifiers of the tumor immune microenvironment implicate drivers of cancer risk and immunotherapy response

21. Extrachromosomal DNA in the cancerous transformation of Barrett’s oesophagus

23. Abstract 1166: APOBEC deaminases compete with tobacco smoking mutagenesis and affect age at onset of lung cancer

24. Abstract 3130: Extrachromosomal DNA in the cancerous transformation of Barrett’s esophagus

25. Supplementary Figures 1-6 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

26. Supplementary Table 5 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

27. Supplementary Methods and Supplementary Figure and Table Legends from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

28. Supplementary Table 4 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

29. Supplementary Table 2 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

30. Supplementary Table 1 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

31. Supplementary Tables S1-S5 from The Clonal Evolution of Metastatic Osteosarcoma as Shaped by Cisplatin Treatment

32. Data from St. Jude Cloud: A Pediatric Cancer Genomic Data-Sharing Ecosystem

33. Supplementary Table 4 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

34. Supplementary Figures S1-S11 from The Clonal Evolution of Metastatic Osteosarcoma as Shaped by Cisplatin Treatment

35. Supplementary Figures S1-S11 from The Clonal Evolution of Metastatic Osteosarcoma as Shaped by Cisplatin Treatment

36. Data from The Clonal Evolution of Metastatic Osteosarcoma as Shaped by Cisplatin Treatment

37. Supplementary Table 2 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

38. Supplementary Table 3 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

39. Supplementary Tables from St. Jude Cloud: A Pediatric Cancer Genomic Data-Sharing Ecosystem

40. Data from The Clonal Evolution of Metastatic Osteosarcoma as Shaped by Cisplatin Treatment

41. Supplementary Table 1 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

42. Data from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

43. Supplementary Figures 1-6 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

44. Supplementary Tables from St. Jude Cloud: A Pediatric Cancer Genomic Data-Sharing Ecosystem

45. Supplementary Table 5 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

46. Supplementary Data from St. Jude Cloud: A Pediatric Cancer Genomic Data-Sharing Ecosystem

47. Supplementary Table 3 from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

48. Supplementary Methods and Supplementary Figure and Table Legends from Whole-Genome and Epigenomic Landscapes of Etiologically Distinct Subtypes of Cholangiocarcinoma

49. Data from St. Jude Cloud: A Pediatric Cancer Genomic Data-Sharing Ecosystem

50. Supplementary Data from St. Jude Cloud: A Pediatric Cancer Genomic Data-Sharing Ecosystem

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