186 results on '"Esposito, Franca"'
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2. Regulation of mitochondrial complex III activity and assembly by TRAP1 in cancer cells
3. TRAP1
4. Cytosolic and mitochondrial translation elongation are coordinated through the molecular chaperone TRAP1 for the synthesis and import of mitochondrial proteins
5. Supplementary Table S2 from TRAP1 Is Involved in BRAF Regulation and Downstream Attenuation of ERK Phosphorylation and Cell-Cycle Progression: A Novel Target for BRAF-Mutated Colorectal Tumors
6. Supplementary Figure S3 from TRAP1 Is Involved in BRAF Regulation and Downstream Attenuation of ERK Phosphorylation and Cell-Cycle Progression: A Novel Target for BRAF-Mutated Colorectal Tumors
7. Data from Mitochondrial Chaperone Trap1 and the Calcium Binding Protein Sorcin Interact and Protect Cells against Apoptosis Induced by Antiblastic Agents
8. Supplementary Table 1 from Mitochondrial Chaperone Trap1 and the Calcium Binding Protein Sorcin Interact and Protect Cells against Apoptosis Induced by Antiblastic Agents
9. Supplementary Table 1 from Sorcin Induces a Drug-Resistant Phenotype in Human Colorectal Cancer by Modulating Ca2+ Homeostasis
10. Supplementary Table 2 from Sorcin Induces a Drug-Resistant Phenotype in Human Colorectal Cancer by Modulating Ca2+ Homeostasis
11. Supplementary Figure 3 from Mitochondrial Chaperone Trap1 and the Calcium Binding Protein Sorcin Interact and Protect Cells against Apoptosis Induced by Antiblastic Agents
12. Supplementary Figure 2 from Sorcin Induces a Drug-Resistant Phenotype in Human Colorectal Cancer by Modulating Ca2+ Homeostasis
13. Data from Sorcin Induces a Drug-Resistant Phenotype in Human Colorectal Cancer by Modulating Ca2+ Homeostasis
14. Supplementary Methods, Figure Legends 1-2 from Sorcin Induces a Drug-Resistant Phenotype in Human Colorectal Cancer by Modulating Ca2+ Homeostasis
15. Supplementary Figure 4 from Mitochondrial Chaperone Trap1 and the Calcium Binding Protein Sorcin Interact and Protect Cells against Apoptosis Induced by Antiblastic Agents
16. Supplementary Figure 1 from Sorcin Induces a Drug-Resistant Phenotype in Human Colorectal Cancer by Modulating Ca2+ Homeostasis
17. Supplementary Figure Legends and Experimental Procedures from TRAP1 Is Involved in BRAF Regulation and Downstream Attenuation of ERK Phosphorylation and Cell-Cycle Progression: A Novel Target for BRAF-Mutated Colorectal Tumors
18. Supplementary Figure 1 from Mitochondrial Chaperone Trap1 and the Calcium Binding Protein Sorcin Interact and Protect Cells against Apoptosis Induced by Antiblastic Agents
19. Data from TRAP1 Is Involved in BRAF Regulation and Downstream Attenuation of ERK Phosphorylation and Cell-Cycle Progression: A Novel Target for BRAF-Mutated Colorectal Tumors
20. Supplementary Figure 2 from Mitochondrial Chaperone Trap1 and the Calcium Binding Protein Sorcin Interact and Protect Cells against Apoptosis Induced by Antiblastic Agents
21. Supplementary Figure Legends 1- 4 from Mitochondrial Chaperone Trap1 and the Calcium Binding Protein Sorcin Interact and Protect Cells against Apoptosis Induced by Antiblastic Agents
22. Stress-Adaptive Response in Ovarian Cancer Drug Resistance
23. Decreased Levels of GSH Are Associated with Platinum Resistance in High-Grade Serous Ovarian Cancer
24. TRAP1 controls cell cycle G2–M transition through the regulation of CDK1 and MAD2 expression/ubiquitination
25. TRAP1 regulates the response of colorectal cancer cells to hypoxia and inhibits ribosome biogenesis under conditions of oxygen deprivation
26. TRAP1
27. Heat shock proteins in cancer stem cell maintenance: A potential therapeutic target?
28. Targeting Mitochondrial Protein Expression as a Future Approach for Cancer Therapy
29. TRAP1-dependent regulation of p70S6K is involved in the attenuation of protein synthesis and cell migration: Relevance in human colorectal tumors
30. TRAP1 enhances Warburg metabolism through modulation of PFK1 expression/activity and favors resistance to EGFR inhibitors in human colorectal carcinomas
31. TRAP1 Regulates Wnt/β-Catenin Pathway through LRP5/6 Receptors Expression Modulation
32. IDH1 Targeting as a New Potential Option for Intrahepatic Cholangiocarcinoma Treatment—Current State and Future Perspectives
33. Cholesterol Homeostasis Modulates Platinum Sensitivity in Human Ovarian Cancer
34. Heat shock proteins in thyroid malignancies: Potential therapeutic targets for poorly-differentiated and anaplastic tumours?
35. Modulation of Mitochondrial Metabolic Reprogramming and Oxidative Stress to Overcome Chemoresistance in Cancer
36. P25. Folding properties and mitochondrial targeting of the prion-like protein shadoo in neuronal hypothalamic cells
37. Gene Copy Number and Post-Transductional Mechanisms Regulate TRAP1 Expression in Human Colorectal Carcinomas
38. Metabolic Dysregulations and Epigenetics: A Bidirectional Interplay that Drives Tumor Progression
39. HSP90 Molecular Chaperones, Metabolic Rewiring, and Epigenetics: Impact on Tumor Progression and Perspective for Anticancer Therapy
40. Endoplasmic Reticulum Stress and Unfolded Protein Response in Breast Cancer: The Balance between Apoptosis and Autophagy and Its Role in Drug Resistance
41. TRAP1 is a novel molecular target in BRAF-driven human colorectal carcinomas
42. Protein Syndesmos is a novel RNA-binding protein that regulates primary cilia formation
43. TRAP1 Regulation of Cancer Metabolism: Dual Role as Oncogene or Tumor Suppressor
44. RAD6: a new target to overcome platinum resistance in ovarian cancer?
45. TRAP1: a viable therapeutic target for future cancer treatments?
46. Regulation of sub-compartmental targeting and folding properties of the Prion-like protein Shadoo
47. Prognostic role of TRAP1 protein network in human metastatic colorectal carcinoma
48. TRAP1 protein signature predicts outcome in human metastatic colorectal carcinoma
49. Biomarker analysis of the MITO2 phase III trial of first-line treatment in ovarian cancer: Predictive value of DNA-PK and phosphorylated ACC
50. TRAP1 downregulation in human ovarian cancer enhances invasion and epithelial–mesenchymal transition
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