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1. Clinical Application of Poly(ADP-ribose) Polymerase (PARP) Inhibitors in Prostate Cancer.

2. CX-5461 sensitizes DNA damage repair-proficient castrate-resistant prostate cancer to PARP inhibition.

3. Ribosomal proteins and human diseases: molecular mechanisms and targeted therapy

4. Harnessing the Nucleolar DNA Damage Response in Cancer Therapy

5. CX-5461 activates the DNA damage response and demonstrates therapeutic efficacy in high-grade serous ovarian cancer

6. ReprogrammedmRNAtranslation drives resistance to therapeutic targeting of ribosome biogenesis

7. CX-5461 can destabilize replication forks in PARP inhibitor-resistant models of ovarian cancer

8. rDNA Chromatin Activity Status as a Biomarker of Sensitivity to the RNA Polymerase I Transcription Inhibitor CX-5461

9. The RNA polymerase I transcription inhibitor CX-5461 cooperates with topoisomerase 1 inhibition by enhancing the DNA damage response in homologous recombination-proficient high-grade serous ovarian cancer

10. CX-5461 activates the DNA damage response and demonstrates therapeutic efficacy in high-grade serous ovarian cancer

11. Inhibition of RNA polymerase I transcription activates targeted DNA damage response and enhances the efficacy of PARP inhibitors in high-grade serous ovarian cancer.

12. A functional genetic screen defines the AKT-induced senescence signaling network

13. Reprogrammed mRNA translation drives metabolic response to therapeutic targeting of ribosome biogenesis

14. Reprogrammed mRNA translation drives resistance to therapeutic targeting of ribosome biogenesis

15. Changes in long-range rDNA-genomic interactions associate with altered RNA polymerase II gene programs during malignant transformation

16. Regulation of PRMT5-MDM4 axis is critical in the response to CDK4/6 inhibitors in melanoma

18. Ribosomal DNA copy loss and repeat instability in ATRX-mutated cancers

19. Methylation of all BRCA1 copies predicts response to the PARP inhibitor rucaparib in ovarian carcinoma.

20. Methylation of all BRCA1 copies predicts response to the PARP inhibitor rucaparib in ovarian carcinoma

21. Palbociclib synergizes with BRAF and MEK inhibitors in treatment naive melanoma but not after the development of BRAF inhibitor resistance

22. Topoisomerase 1 inhibition promotes cyclic GMP-AMP synthase-dependent antiviral responses.

23. The Potential of Targeting Ribosome Biogenesis in High-Grade Serous Ovarian Cancer

24. Topoisomerase 1 Inhibition Promotes Cyclic GMP-AMP Synthase-Dependent Antiviral Responses

25. Inhibition of RNA polymerase I transcription initiation by CX-5461 activates non-canonical ATM/ATR signaling

26. Amino acid-dependent signaling via S6K1 and MYC is essential for regulation of rDNA transcription

28. A novel role for the pol I transcription factor ubtf in maintaining genome stability through the regulation of highly transcribed pol II genes

29. Genome wide mapping of UBF binding-sites in mouse and human cell lines

30. Evidence for a CDK4-dependent checkpoint in a conditional model of cellular senescence

32. Perturbations at the ribosomal genes loci are at the centre of cellular dysfunction and human disease

33. Dysregulation of RNA polymerase I transcription during disease

34. Characterization of monoclonal antibodies specific to the transcription factor ETS-2 protein.

35. c-MYC coordinately regulates ribosomal gene chromatin remodeling and Pol I availability during granulocyte differentiation

37. UBF levels determine the number of active ribosomal RNA genes in mammals

38. Chromatin organization and expression.

41. Transformation induced by Ewing's sarcoma associated EWS/FLI-I is suppressed by KRAB/FLI-I

42. Epstein-Barr virus LMP1 blocks p(16INK4a)-RB pathway by promoting nuclear export of E2F4/5

48. ERG and c-MYC regulate a critical gene network in BCR::ABL1-driven B cell acute lymphoblastic leukemia.

49. Targeting the ribosome to treat multiple myeloma.

50. Persistence of UBTF tandem duplications in remission in acute myeloid leukaemia.

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