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54 results on '"Prensner JR"'

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1. Microproteins in cancer: identification, biological functions, and clinical implications.

2. High-quality peptide evidence for annotating non-canonical open reading frames as human proteins.

3. Upstream open reading frames: new players in the landscape of cancer gene regulation.

4. Deep learning to decode sites of RNA translation in normal and cancerous tissues.

5. Translation of non-canonical open reading frames as a cancer cell survival mechanism in childhood medulloblastoma.

6. A road map for the treatment of pediatric diffuse midline glioma.

8. What Can Ribo-Seq, Immunopeptidomics, and Proteomics Tell Us About the Noncanonical Proteome?

9. Shining a light on the dark proteome: Non-canonical open reading frames and their encoded miniproteins as a new frontier in cancer biology.

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

11. Translation of non-canonical open reading frames as a cancer cell survival mechanism in childhood medulloblastoma.

12. Evolutionary origins and interactomes of human, young microproteins and small peptides translated from short open reading frames.

13. Standardized annotation of translated open reading frames.

14. SEQing to find hidden medulloblastoma cells.

15. Noncanonical open reading frames encode functional proteins essential for cancer cell survival.

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

17. Safety and efficacy of gamma-secretase inhibitor nirogacestat (PF-03084014) in desmoid tumor: Report of four pediatric/young adult cases.

18. An emerging role for endothelial barrier support therapy for congenital disorders of glycosylation.

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

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

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

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

24. Modulation of long noncoding RNAs by risk SNPs underlying genetic predispositions to prostate cancer.

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

26. Integrative Clinical Sequencing in the Management of Refractory or Relapsed Cancer in Youth.

27. The landscape of antisense gene expression in human cancers.

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

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

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

31. 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.

32. The long non-coding RNA PCAT-1 promotes prostate cancer cell proliferation through cMyc.

33. KRAS-G12C mutation is associated with poor outcome in surgically resected lung adenocarcinoma.

34. The lncRNA PCAT29 inhibits oncogenic phenotypes in prostate cancer.

35. The IncRNAs PCGEM1 and PRNCR1 are not implicated in castration resistant prostate cancer.

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

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

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

39. Systematic, evidence-based discovery of biomarkers at the NCI.

40. The mutational landscape of lethal castration-resistant prostate cancer.

41. Expressed pseudogenes in the transcriptional landscape of human cancers.

42. PARP-1 inhibition as a targeted strategy to treat Ewing's sarcoma.

43. Beyond PSA: the next generation of prostate cancer biomarkers.

44. The emergence of lncRNAs in cancer biology.

45. Coordinated regulation of polycomb group complexes through microRNAs in cancer.

46. Transcriptome sequencing across a prostate cancer cohort identifies PCAT-1, an unannotated lincRNA implicated in disease progression.

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

48. Characterization of KRAS rearrangements in metastatic prostate cancer.

49. Metabolism unhinged: IDH mutations in cancer.

50. A FIRE-y PAGE in the computational analysis of cancer profiles.

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