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Your search keyword '"Rust, Alistair G."' showing total 48 results

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2. Transposon Mutagenesis Reveals RBMS3 Silencing as a Promoter of Malignant Progression of BRAFV600E-Driven Lung Tumorigenesis

3. The mutational landscapes of genetic and chemical models of Kras-driven lung cancer

4. Suppression of interferon gene expression overcomes resistance to MEK inhibition in KRAS-mutant colorectal cancer

6. Supplementary Data from Transposon Mutagenesis Reveals RBMS3 Silencing as a Promoter of Malignant Progression of BRAFV600E-Driven Lung Tumorigenesis

7. Data from Transposon Mutagenesis Reveals RBMS3 Silencing as a Promoter of Malignant Progression of BRAFV600E-Driven Lung Tumorigenesis

11. Supplementary Tables 1-5 from Novel Candidate Cancer Genes Identified by a Large-Scale Cross-Species Comparative Oncogenomics Approach

13. Supplementary Table 7 from Novel Candidate Cancer Genes Identified by a Large-Scale Cross-Species Comparative Oncogenomics Approach

16. Supplementary Methods from Novel Candidate Cancer Genes Identified by a Large-Scale Cross-Species Comparative Oncogenomics Approach

18. Data from Novel Candidate Cancer Genes Identified by a Large-Scale Cross-Species Comparative Oncogenomics Approach

19. Supplementary Table 6 from Novel Candidate Cancer Genes Identified by a Large-Scale Cross-Species Comparative Oncogenomics Approach

25. Correction: Suppression of interferon gene expression overcomes resistance to MEK inhibition in KRAS-mutant colorectal cancer

26. "Transposon Mutagenesis Reveals RBMS3 as a Promoter of Malignant Progression of BRAFV600E-Driven Lung Tumorigenesis."

27. Engineering Cancer Antigen-Specific T Cells to Overcome the Immunosuppressive Effects of TGF-β

29. Suppression of interferon gene expression overcomes resistance to MEK inhibition in KRAS-mutant colorectal cancer

30. Optimised ARID1A immunohistochemistry is an accurate predictor of ARID1A mutational status in gynaecological cancers

31. A lentiviral vector‐based insertional mutagenesis screen identifies mechanisms of resistance to MAPK inhibitors in melanoma

32. Optimised ARID1A immunohistochemistry is an accurate predictor ofARID1Amutational status in gynaecological cancers

33. A lentiviral vector‐based insertional mutagenesis screen identifies mechanisms of resistance to MAPK inhibitors in melanoma.

34. Analyzing tumor heterogeneity and driver genes in single myeloid leukemia cells with SBCapSeq

35. A Genome-Wide Association Study for Regulators of Micronucleus Formation in Mice

36. Sleeping Beautyscreen revealsPpargactivation in metastatic prostate cancer

37. Adenoma development in familial adenomatous polyposis and MUTYH‐associated polyposis: somatic landscape and driver genes

38. A novel mouse model identifies cooperating mutations and therapeutic targets critical for chronic myeloid leukemia progression

40. Transposon mutagenesis identifies genetic drivers of BrafV600E melanoma

42. The mutational landscapes of genetic and chemical models of Kras-driven lung cancer

43. Sleeping Beauty screen reveals Pparg activation in metastatic prostate cancer.

44. Sleeping Beauty transposon mutagenesis identifies genes that cooperate with mutant Smad4 in gastric cancer development.

45. Somatic drivers of B-ALL in a model of ETV6-RUNX1; Pax5+/- leukemia.

46. Transposon mutagenesis identifies genetic drivers of BrafV600E melanoma.

47. Somatic drivers of B-ALL in a model of ETV6-RUNX1; Pax5(+/-) leukemia.

48. A Genome-Wide Association Study for Regulators of Micronucleus Formation in Mice.

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