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3. Transcriptome-wide profiles of circular RNA and RNA-binding protein interactions reveal effects on circular RNA biogenesis and cancer pathway expression

4. Analyses of non-coding somatic drivers in 2,658 cancer whole genomes.

5. Pathway and network analysis of more than 2500 whole cancer genomes.

8. Author Correction: Pathway and network analysis of more than 2500 whole cancer genomes

10. circHIPK3 nucleates IGF2BP2 and functions as a competing endogenous RNA

11. Author response: circHIPK3 nucleates IGF2BP2 and functions as a competing endogenous RNA

12. Error-Corrected Deep Targeted Sequencing of Circulating Cell-Free DNA from Colorectal Cancer Patients for Sensitive Detection of Circulating Tumor DNA

13. Exploring the tumor genomic landscape of aggressive prostate cancer by whole‐genome sequencing of tissue or liquid biopsies

14. Author Response: circHIPK3 nucleates IGF2BP2 and functions as a competing endogenous RNA

16. Author Correction: Analyses of non-coding somatic drivers in 2,658 cancer whole genomes

17. circHIPK3 nucleates IGF2BP2 and functions as a competing endogenous RNA

18. Error-corrected deep targeted sequencing of circulating cell-free DNA from colorectal cancer patients for sensitive detection of circulating tumor DNA

21. circHIPK3 nucleates IGF2BP2 and functions as a competing endogenous RNA

22. APD-Containing Cyclolipodepsipeptides Target Mitochondrial Function in Hypoxic Cancer Cells

25. Identification and classification of conserved RNA secondary structures in the human genome

26. Supplementary Table S4 from Paired Exome Analysis Reveals Clonal Evolution and Potential Therapeutic Targets in Urothelial Carcinoma

27. Data from Paired Exome Analysis Reveals Clonal Evolution and Potential Therapeutic Targets in Urothelial Carcinoma

28. Supplementary Figures S1-S19 from Paired Exome Analysis Reveals Clonal Evolution and Potential Therapeutic Targets in Urothelial Carcinoma

29. Supplementary Methods and References from Paired Exome Analysis Reveals Clonal Evolution and Potential Therapeutic Targets in Urothelial Carcinoma

30. Supplementary Table and Figure Legend from Paired Exome Analysis Reveals Clonal Evolution and Potential Therapeutic Targets in Urothelial Carcinoma

36. A deep learning system accurately classifies primary and metastatic cancers using passenger mutation patterns

37. Additional file 1 of DREAMS: deep read-level error model for sequencing data applied to low-frequency variant calling and circulating tumor DNA detection

38. Combined burden and functional impact tests for cancer driver discovery using DriverPower

39. Integrative pathway enrichment analysis of multivariate omics data

40. Pathway and network analysis of more than 2500 whole cancer genomes

41. Divergent mutational processes distinguish hypoxic and normoxic tumours

43. Genomic footprints of activated telomere maintenance mechanisms in cancer

44. DREAMS: Deep Read-level Error Model for Sequencing data applied to low-frequency variant calling and circulating tumor DNA detection

48. Pathway and network analysis of more than 2500 whole cancer genomes

49. ncdDetect2: improved models of the site-specific mutation rate in cancer and driver detection with robust significance evaluation

50. Analyses of non-coding somatic drivers in 2,658 cancer whole genomes

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