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1. Transposon Insertion Mutagenesis in Mice for Modeling Human Cancers: Critical Insights Gained and New Opportunities.

2. Transposons As Tools for Functional Genomics in Vertebrate Models.

3. Phase I trials using Sleeping Beauty to generate CD19-specific CAR T cells.

4. Case-oriented pathways analysis in pancreatic adenocarcinoma using data from a sleeping beauty transposon mutagenesis screen.

5. RNA sequencing of Sleeping Beauty transposon-induced tumors detects transposon-RNA fusions in forward genetic cancer screens.

6. Transposon mouse models to elucidate the genetic mechanisms of hepatitis B viral induced hepatocellular carcinoma.

7. Transposon Mutagenesis Screen Identifies Potential Lung Cancer Drivers and CUL3 as a Tumor Suppressor.

8. Genetic signature of histiocytic sarcoma revealed by a sleeping beauty transposon genetic screen in mice.

9. Simple and efficient methods for enrichment and isolation of endonuclease modified cells.

10. Mouse models of cancer: Sleeping Beauty transposons for insertional mutagenesis screens and reverse genetic studies.

11. Modular assembly of transposon integratable multigene vectors using RecWay assembly.

12. Evaluating risks of insertional mutagenesis by DNA transposons in gene therapy.

13. TAPDANCE: an automated tool to identify and annotate transposon insertion CISs and associations between CISs from next generation sequence data.

14. New methods for finding common insertion sites and co-occurring common insertion sites in transposon- and virus-based genetic screens.

15. Somatic mutagenesis with a Sleeping Beauty transposon system leads to solid tumor formation in zebrafish.

16. A Sleeping Beauty transposon-mediated screen identifies murine susceptibility genes for adenomatous polyposis coli (Apc)-dependent intestinal tumorigenesis.

17. Efficient mammalian germline transgenesis by cis-enhanced Sleeping Beauty transposition.

18. Sleeping beauty-mediated somatic mutagenesis implicates CSF1 in the formation of high-grade astrocytomas.

19. A transposon and transposase system for human application.

20. Efficient transposition of Tol2 in the mouse germline.

21. Transposon-mediated mutagenesis of somatic cells in the mouse for cancer gene identification.

22. Whole-body sleeping beauty mutagenesis can cause penetrant leukemia/lymphoma and rare high-grade glioma without associated embryonic lethality.

23. A modified sleeping beauty transposon system that can be used to model a wide variety of human cancers in mice.

24. A transposon-based genetic screen in mice identifies genes altered in colorectal cancer.

25. A conditional transposon-based insertional mutagenesis screen for genes associated with mouse hepatocellular carcinoma.

26. Transposon mutagenesis in mice.

27. Transposon-mediated mutagenesis in somatic cells: identification of transposon-genomic DNA junctions.

28. Transposable elements and the dynamic somatic genome.

29. Transposons for cancer gene discovery: Sleeping Beauty and beyond.

30. Harnessing a high cargo-capacity transposon for genetic applications in vertebrates.

31. Gene mutations and genomic rearrangements in the mouse as a result of transposon mobilization from chromosomal concatemers.

32. Conditional gene expression in the mouse using a Sleeping Beauty gene-trap transposon.

33. Structure-based prediction of insertion-site preferences of transposons into chromosomes.

34. RNA as a source of transposase for Sleeping Beauty-mediated gene insertion and expression in somatic cells and tissues.

35. Sleeping Beauty-mediated transposition and long-term expression in vivo: use of the LoxP/Cre recombinase system to distinguish transposition-specific expression.

36. Somatic integration of an oncogene-harboring Sleeping Beauty transposon models liver tumor development in the mouse.

37. Combinatorial antiangiogenic gene therapy by nonviral gene transfer using the sleeping beauty transposon causes tumor regression and improves survival in mice bearing intracranial human glioblastoma.

38. Hopping around the tumor genome: transposons for cancer gene discovery.

39. Mammalian mutagenesis using a highly mobile somatic Sleeping Beauty transposon system.

40. Target-site preferences of Sleeping Beauty transposons.

41. Sleeping beauty transposon-mediated gene therapy for prolonged expression.

42. Integration and long-term expression in xenografted human glioblastoma cells using a plasmid-based transposon system.

43. Generating and manipulating transgenic animals using transposable elements.

44. Gene insertion and long-term expression in lung mediated by the Sleeping Beauty transposon system.

45. Transposon mutagenesis of the mouse germline.

46. Gene transfer into genomes of human cells by the sleeping beauty transposon system.

47. MTID: a database of Sleeping Beauty transposon insertions in mice.

48. Mammalian germ-line transgenesis by transposition.

49. Clonal selection drives genetic divergence of metastatic medulloblastoma.

50. Large-scale cross-species oncogenomics identifies candidate oncogenes and tumor suppressor genes

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