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1. Combinatorial Screening of Biscarbamate Ionizable Lipids Identifies a Low Reactogenicity Lipid for Lipid Nanoparticle mRNA Delivery

4. Supplementary Figure 5 from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

5. Supplementary Figure 8 from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

6. Supplementary Information from A Tumor Suppressor Enhancer of PTEN in T-cell Development and Leukemia

7. Supplementary Figure 1 from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

8. Data from A Tumor Suppressor Enhancer of PTEN in T-cell Development and Leukemia

9. Supplementary Figure 9 from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

10. Supplementary Tables from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

11. Supplementary Figure 7 from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

12. Supplementary Figure 4 from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

13. Supplementary Figure 6 from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

14. Supplementary Figure 2 from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

15. Supplementary Figure 3 from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

16. Data from Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-cell Acute Lymphoblastic Leukemia

17. Data from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

18. Supplementary Table 10 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

19. Supplementary Table 8 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

20. Supplementary Table 7 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

21. Supplementary Table 2 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

22. Supplementary Table 6 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

23. Supplementary Table 9 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

24. Supplementary Table 4 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

25. Supplementary Table 5 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

26. Supplementary Figures S1-15 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

27. Supplementary Table 3 from Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

35. Aging of preleukemic thymocytes drives CpG island hypermethylation in T-cell acute lymphoblastic leukemia

36. A Tumor Suppressor Enhancer ofPTENin T-cell Development and Leukemia

37. Aging of Preleukemic Thymocytes Drives CpG Island Hypermethylation in T-Cell Acute Lymphoblastic Leukemia

38. Posttranslational Regulation of the Exon Skipping Machinery Controls Aberrant Splicing in Leukemia

39. hsa-miR-20b-5p and hsa-miR-363-3p Affect Expression of PTEN and BIM Tumor Suppressor Genes and Modulate Survival of T-ALL Cells In Vitro

45. Accelerated thymic atrophy as a result of elevated homeostatic expression of the genes encoded by the TNF/lymphotoxin cytokine locus

46. Dynamic changes in chromatin conformation at the TNF transcription start site in T helper lymphocyte subsets.

47. Highly Variable Frequencies of Donor Antigen-Specific Naive Cells May Dictate the Immunogenicity of Minor Histocompatibility Antigens after Hematopoietic Stem Cell Transplantation

48. Experimental applications of TNF-reporter mice with far-red fluorescent label.

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