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3. Fine-tuning of gene expression through the Mettl3-Mettl14-Dnmt1 axis controls ESC differentiation

4. SRSF2 plays an unexpected role as reader of m5C on mRNA, linking epitranscriptomics to cancer

6. Mesp1 controls the chromatin and enhancer landscapes essential for spatiotemporal patterning of early cardiovascular progenitors

7. The N6-methyladenosine RNA epigenetic modification modulates the amplification of coxsackievirus B1 in human pancreatic beta cells.

8. Downregulation of the FTO m6A RNA demethylase promotes EMT-mediated progression of epithelial tumors and sensitivity to Wnt inhibitors

9. Functional role of Tet-mediated RNA hydroxymethylcytosine in mouse ES cells and during differentiation

10. Dynamic changes in RNA m6A and 5 hmC influence gene expression programs during macrophage differentiation and polarisation.

13. SRSF2 plays an unexpected role as reader of m5C on mRNA, linking epitranscriptomics to cancer.

14. DNA methylation-based immune response signature improves patient diagnosis in multiple cancers

15. Transcriptome-wide distribution and function of RNA hydroxymethylcytosine

16. Suppl Table S2 from TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression

17. Legend of supplementary data from TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression

18. Table S1 from TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression

19. Supplementary Figures from TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression

20. Data from TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression

21. Regulation of DNA Methylation Patterns by CK2-Mediated Phosphorylation of Dnmt3a

23. RNA m6A and 5hmC regulate monocyte and macrophage gene expression programs

24. Improving Infinium MethylationEPIC data processing: re-annotation of enhancers and long noncoding RNA genes and benchmarking of normalization methods.

25. The RNA demethylase FTO controls m6A marking on SARS-CoV-2 and classifies COVID-19 severity in patients

28. RNA BIOCHEMISTRY: Transcriptome-wide distribution and function of RNA hydroxymethylcytosine

31. DNA methylation profiling reveals a predominant immune component in breast cancers

34. The chromatin remodelling protein LSH/HELLS regulates the amount and distribution of DNA hydroxymethylation in the genome

38. The chromatin remodelling protein LSH/HELLS regulates the amount and distribution of DNA hydroxymethylation in the genome.

40. TET2-dependent hydroxymethylome plasticity reduces melanoma initiation and progression

41. TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression

43. Immunity drives TET1 regulation in cancer through NF-κB

44. Comprehensive identification of long noncoding RNAs in colorectal cancer

45. Immunity drives TET1 regulation in cancer through NF-κB

46. The transcription factors Runx3 and ThPOK cross-regulate acquisition of cytotoxic function by human Th1 lymphocytes.

47. The transcription factors Runx3 and ThPOK cross-regulate acquisition of cytotoxic function by human Th1 lymphocytes

48. Author response: The transcription factors Runx3 and ThPOK cross-regulate acquisition of cytotoxic function by human Th1 lymphocytes

49. A comprehensive overview of Infinium Human Methylation450 data processing

50. Portraying breast cancers with long noncoding RNAs

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