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82 results on '"John R. Prensner"'

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1. The lncRNA landscape of breast cancer reveals a role for DSCAM-AS1 in breast cancer progression

2. A Novel RNA In Situ Hybridization Assay for the Long Noncoding RNA SChLAP1 Predicts Poor Clinical Outcome After Radical Prostatectomy in Clinically Localized Prostate Cancer

3. Role of the TMPRSS2-ERG Gene Fusion in Prostate Cancer

4. What can Ribo-seq and proteomics tell us about the non-canonical proteome?

5. Supplementary Methods, Figures, Tables, and References from Characterization of KRAS Rearrangements in Metastatic Prostate Cancer

6. Data Supplement from The lncRNA PCAT29 Inhibits Oncogenic Phenotypes in Prostate Cancer

7. Supplementary Methods and Data (posted 7/5/2011) from Characterization of KRAS Rearrangements in Metastatic Prostate Cancer

8. Data from PARP-1 Inhibition as a Targeted Strategy to Treat Ewing's Sarcoma

9. Data from Characterization of TMPRSS2:ETV5 and SLC45A3:ETV5 Gene Fusions in Prostate Cancer

14. Supplementary Figures 1-2, Tables 1-2 from Characterization of TMPRSS2:ETV5 and SLC45A3:ETV5 Gene Fusions in Prostate Cancer

18. Data from PCAT-1, a Long Noncoding RNA, Regulates BRCA2 and Controls Homologous Recombination in Cancer

20. SEQing to find hidden medulloblastoma cells

21. Standardized annotation of translated open reading frames

22. A community-driven roadmap to advance research on translated open reading frames detected by Ribo-seq

23. Abstract 3624: Non-canonical proteins are cancer cell vulnerabilities in diverse malignancies

24. A case of metastatic adenocarcinoma of unknown primary in a pediatric patient: Opportunities for precision medicine

25. Non-canonical open reading frames encode functional proteins essential for cancer cell survival

26. Clinically Integrated Sequencing Alters Therapy in Children and Young Adults With High-Risk Glial Brain Tumors

27. Burkitt Lymphoma Presenting as Menorrhagia and a Vaginal Mass in an Adolescent

28. BIOL-03. PROTEIN TRANSLATION FROM NON-CODING GENOMIC LOCI PRODUCE BIOLOGICALLY-ACTIVE PROTEINS IMPLICATED IN CANCER CELL SURVIVAL IN PEDIATRIC BRAIN TUMORS

29. TBIO-26. NON-CANONICAL OPEN READING FRAMES ENCODE FUNCTIONAL PROTEINS ESSENTIAL FOR CANCER CELL SURVIVAL

30. Targeting the MLL complex in castration-resistant prostate cancer

31. The landscape of long noncoding RNAs in the human transcriptome

32. PDCT-14. CLINICALLY INTEGRATED SEQUENCING SIGNIFICANTLY ALTERS THERAPY IN CHILDREN AND YOUNG ADULTS WITH HIGH-RISK GLIAL BRAIN TUMORS

33. The Long Non-Coding RNA PCAT-1 Promotes Prostate Cancer Cell Proliferation through cMyc

34. The lncRNAs PCGEM1 and PRNCR1 are not implicated in castration resistant prostate cancer

35. Abstract 4344: Integrative functional proteogenomics for unannotated or uncharacterized proteins in cancer

36. The long noncoding RNA SChLAP1 promotes aggressive prostate cancer and antagonizes the SWI/SNF complex

37. Precision medicine in pediatric oncology: Lessons learned and next steps

38. Analysis of the Tau-Associated Proteome Reveals That Exchange of Hsp70 for Hsp90 Is Involved in Tau Degradation

39. PARP-1 Inhibition as a Targeted Strategy to Treat Ewing's Sarcoma

40. Deep sequencing reveals distinct patterns of DNA methylation in prostate cancer

41. Characterization of TMPRSS2:ETV5 and SLC45A3:ETV5 Gene Fusions in Prostate Cancer

42. Assessing the significance of chromosomal aberrations in cancer: Methodology and application to glioma

43. Integrative clinical sequencing in the management of children and young adults with refractory or relapsed cancer

44. Oncogenic Role of THOR, a Conserved Cancer/Testis Long Non-coding RNA

45. Metabolism unhinged: IDH mutations in cancer

46. RNA biomarkers associated with metastatic progression in prostate cancer: a multi-institutional high-throughput analysis of SChLAP1

47. The lncRNA PCAT29 inhibits oncogenic phenotypes in prostate cancer

48. The landscape of antisense gene expression in human cancers

49. PCAT-1, a long noncoding RNA, regulates BRCA2 and controls homologous recombination in cancer

50. Reconstructing targetable pathways in lung cancer by integrating diverse omics data

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