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1. TTLL12 has a potential oncogenic activity, suppression of ligation of nitrotyrosine to the C-terminus of detyrosinated α-tubulin, that can be overcome by molecules identified by screening a compound library.

2. XRP44X, an Inhibitor of Ras/Erk Activation of the Transcription Factor Elk3, Inhibits Tumour Growth and Metastasis in Mice.

3. The oncogenic MicroRNA Hsa-miR-155-5p targets the transcription factor ELK3 and links it to the hypoxia response.

4. Elk3 deficiency causes transient impairment in post-natal retinal vascular development and formation of tortuous arteries in adult murine retinae.

5. Tubulin tyrosine ligase like 12, a TTLL family member with SET- and TTL-like domains and roles in histone and tubulin modifications and mitosis.

6. CTIP2 expression in human head and neck squamous cell carcinoma is linked to poorly differentiated tumor status.

10. Data from Inhibition of the Ras-Net (Elk-3) Pathway by a Novel Pyrazole that Affects Microtubules

14. Preferential Response of Basal-Like Head and Neck Squamous Cell Carcinoma Cell Lines to EGFR-Targeted Therapy Depending on EREG-Driven Oncogenic Addiction

15. XRP44X, an Inhibitor of Ras/Erk Activation of the Transcription Factor Elk3, Inhibits Tumour Growth and Metastasis in Mice

16. ANO1 amplification and expression in HNSCC with a high propensity for future distant metastasis and its functions in HNSCC cell lines

17. Inhibition of the Ras-Net (Elk-3) Pathway by a Novel Pyrazole that Affects Microtubules

18. Human Papillomavirus-related tumours of the oropharynx display a lower tumour hypoxia signature

19. Defect in the p53-Mdm2 Autoregulatory Loop Resulting from Inactivation of TAFII250 in Cell Cycle Mutant tsBN462 Cells

20. p53 mediated death of cells overexpressing MDM2 by an inhibitor of MDM2 interaction with p53

21. Conserved mechanisms of Ras regulation of evolutionary related transcription factors, Ets1 and Pointed P2

22. Tubulin Tyrosine Ligase Like 12, a TTLL Family Member with SET- and TTL-Like Domains and Roles in Histone and Tubulin Modifications and Mitosis

23. Oncogenic conversion of Ets affects redox regulationin-vivoandin-vitro

24. Tubulin tyrosine ligase like 12 links to prostate cancer through tubulin posttranslational modification and chromosome ploidy

25. A novel modulator domain of Ets transcription factors

26. Cell-specific regulation of oncogene-responsive sequences of the c-fos promoter

27. Prediction of future metastasis and molecular characterization of head and neck squamous-cell carcinoma based on transcriptome and genome analysis by microarrays

28. Head and neck squamous cell carcinoma transcriptome analysis by comprehensive validated differential display

29. Sumoylation of the net inhibitory domain (NID) is stimulated by PIAS1 and has a negative effect on the transcriptional activity of Net

30. Differential expression profiling of head and neck squamous cell carcinoma (HNSCC)

31. The transcription factor Net regulates the angiogenic switch

32. Sp100 interacts with ETS-1 and stimulates its transcriptional activity

33. Interaction of Ets-1 and the POU-homeodomain protein GHF-1/Pit-1 reconstitutes pituitary-specific gene expression

34. Abstract 4015: TTLL12: A promising therapeutic target for prostate cancer

35. CTIP2 Expression in Human Head and Neck Squamous Cell Carcinoma Is Linked to Poorly Differentiated Tumor Status

36. The c-Ets oncoprotein activates the stromelysin promoter through the same elements as several non-nuclear oncoproteins

37. The c-ets proto-oncogenes encode transcription factors that cooperate with c-Fos and c-Jun for transcriptional activation

38. Negative and positive factors determine the activity of the polyoma virus enhancer alpha domain in undifferentiated and differentiated cell types

39. Negative regulation contributes to tissue specificity of the immunoglobulin heavy-chain enhancer

40. Short and long range activation by the SV40 enhancer

41. Expression of raf Oncogenes Activates the PEA1 Transcription Factor Motif

42. PEA3 is a nuclear target for transcription activation by non-nuclear oncogenes

43. The immunoglobulin heavy-chain B-lymphocyte enhancer efficiently stimulates transcription in non-lymphoid cells

44. A Harvey-ras responsive transcription element is also responsive to a tumour-promoter and to serum

45. v-jun is a transcriptional activator, but not in all cell-lines

46. The immunoglobulin heavy chain enhancer is stimulated by the adenovirus type 2 E1A products in mouse fibroblasts

47. The SV40 72 bp repeat preferentially potentiates transcription starting from proximal natural or substitute promoter elements

48. B-lymphocyte targeting of gene expression in transgenic mice with the immunoglobulin heavy-chain enhancer

49. The c-Ha-ras oncogene and a tumor promoter activate the polyoma virus enhancer

50. Functional interaction of c-Ets-1 and GHF-1/Pit-1 mediates Ras activation of pituitary-specific gene expression: mapping of the essential c-Ets-1 domain

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