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450 results on '"Retinoblastoma Binding Proteins"'

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1. Concurrent RB1 Loss and BRCA Deficiency Predicts Enhanced Immunologic Response and Long-term Survival in Tubo-ovarian High-grade Serous Carcinoma

2. Glioblastomas with primitive neuronal component harbor a distinct methylation and copy-number profile with inactivation of TP53, PTEN, and RB1

3. The interaction of SKP2 with p27 enhances the progression and stemness of osteosarcoma

4. RB depletion is required for the continuous growth of tumors initiated by loss of RB

5. Next-Generation Sequencing of Retinoblastoma Identifies Pathogenic Alterations beyond RB1 Inactivation That Correlate with Aggressive Histopathologic Features

6. The RB1 Story: Characterization and Cloning of the First Tumor Suppressor Gene.

7. Concordance of Circulating Tumor DNA and Matched Metastatic Tissue Biopsy in Prostate Cancer.

8. Cell Senescence and the Genetics of Melanoma Development.

9. Studies in the Area of Cervical Cancer Reported from University of Pretoria [Probing the Effects of Retinoblastoma Binding Protein 6 (RBBP6) Knockdown on the Sensitivity of Cisplatin in Cervical Cancer Cells].

10. An atypical location of pineoblastoma RB1 subgroup without pineal or retinal tumor.

11. Pharmacological modulation of RB1 activity mitigates resistance to neoadjuvant chemotherapy in locally advanced rectal cancer.

12. RB1-deficient squamous cell carcinoma: the proposed source of combined Merkel cell carcinoma

13. Hepatocellular carcinoma evades RB1-induced senescence by activating the FOXM1–FOXO1 axis

14. Targeting the untargetable: RB1-deficient tumours are vulnerable to Skp2 ubiquitin ligase inhibition

15. REST Inactivation and Coexpression of ASCL1 and POU3F4 Are Necessary for the Complete Transformation of RB1/TP53-Inactivated Lung Adenocarcinoma into Neuroendocrine Carcinoma

16. Comparative study of Rb1, cyclin <scp>D1</scp> and p16 immunohistochemistry expression to distinguish lung small‐cell carcinoma and large‐cell neuroendocrine carcinoma

17. RB1 loss in the mesenchymal component of onychomatricoma.

18. A functionalized graphene oxide with improved cytocompatibility for stimuli-responsive co-delivery of curcumin and doxorubicin in cancer treatment

19. Researcher from Fourth Hospital of Hebei Medical University Discusses Findings in Lung Cancer (Ropivacaine inhibits the malignant behavior of lung cancer cells by regulating retinoblastoma-binding protein 4).

20. Clinicopathological and genomic features in patients with head and neck neuroendocrine carcinoma

21. Simultaneous expression of MMB-FOXM1 complex components enables efficient bypass of senescence

22. High p16 expression and heterozygous RB1 loss are biomarkers for CDK4/6 inhibitor resistance in ER+ breast cancer

23. Identification of novel RB1 genetic variants in Retinoblastoma patients and their impact on clinical outcome

24. Novel Oncogenic Transcription Factor Cooperation in RB-Deficient Cancer

25. A first case of ductal adenocarcinoma of the prostate having characteristics of neuroendocrine phenotype with PTEN, RB1 and TP53 alterations

26. Protective Effect of Ginsenoside Rb1 Nanoparticles Against Contrast-Induced Nephropathy by Inhibiting High Mobility Group Box 1 Gene/Toll-Like Receptor 4/NF-κB Signaling Pathway

27. Targeted Next-Generation Sequencing Reveals Heterogenous Genomic Features in Viscerally Metastatic Prostate Cancer

28. Integrative analysis of multi-omics data reveals inhibition of RB1 signaling promotes apatinib resistance of hepatocellular carcinoma.

30. Inactivation of RB1, CDKN2A, and TP53 have distinct effects on genomic stability at side-by-side comparison in karyotypically normal cells

31. Differential impact of tumor suppressor gene (TP53, PTEN, RB1) alterations and treatment outcomes in metastatic, hormone-sensitive prostate cancer

32. Multi-omics profiling of primary small cell carcinoma of the esophagus reveals RB1 disruption and additional molecular subtypes

33. MiR-3663-3p Inhibits the Progression of Gastric Cancer Through the CCND1 Pathway

34. MiR-192-5p/RB1/NF-κBp65 signaling axis promotes IL-10 secretion during gastric cancer EMT to induce Treg cell differentiation in the tumour microenvironment

35. Interruption of aberrant chromatin looping is required for regenerating RB1 function and suppressing tumorigenesis

36. A Japanese case of castration-resistant prostate cancer with BRCA2 and RB1 co-loss and TP53 mutation: a case report

37. Ginsenoside Rb1 Prevents Oxidative Stress-Induced Apoptosis and Mitochondrial Dysfunction in Muscle Stem Cells via NF

38. RB1 and TP53 co-mutations correlate strongly with genomic biomarkers of response to immunity checkpoint inhibitors in urothelial bladder cancer

39. Liposarcoma in children and young adults: a clinicopathologic and molecular study of 23 cases in one of the largest institutions of China

40. Smad4 deficiency substitutes Cdkn2b but not Cdkn2a downregulation in pancreatic cancer following induction of genetic events in adult mice

41. The interaction of SKP2 with p27 enhances the progression and stemness of osteosarcoma

42. HDAC5 Loss Impairs RB Repression of Pro-Oncogenic Genes and Confers CDK4/6 Inhibitor Resistance in Cancer

43. Spectrum of germline mutations in RB1 in Chinese patients with retinoblastoma: Application of targeted next-generation sequencing

44. Identification of a novel immune microenvironment signature predicting survival and therapeutic options for bladder cancer

45. Distinct Genomic Alterations in Prostate Tumors Derived from African American Men

46. DNA hypermethylation/boundary control loss identified in retinoblastomas associated with genetic and epigenetic inactivation of the RB1 gene promoter

47. Evolutionary genomics of mammalian lung cancer genes reveals signatures of positive selection in APC, RB1 and TP53

48. Verteporfin Inhibits the Progression of Spontaneous Osteosarcoma Caused by Trp53 and Rb1 Deficiency in Ctsk-Expressing Cells via Impeding Hippo Pathway

49. Novel RB1 germline mutation in a healthy man

50. Hereditary retinoblastoma iPSC model reveals aberrant spliceosome function driving bone malignancies

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