163 results on '"Kaelin Jr, William G."'
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2. Prolonged hypoxia alleviates prolyl hydroxylation-mediated suppression of RIPK1 to promote necroptosis and inflammation
3. Total loss of VHL gene function impairs neuroendocrine cancer cell fitness due to excessive HIF2α activity.
4. Induction of DEPP1 by HIF Mediates Multiple Hallmarks of Ischemic Cardiomyopathy.
5. Skp2 dictates cell cycle-dependent metabolic oscillation between glycolysis and TCA cycle
6. 2-Oxoglutarate-dependent dioxygenases in cancer
7. Von Hippel-Lindau disease: insights into oxygen sensing, protein degradation, and cancer
8. Targeting the HIF2–VEGF axis in renal cell carcinoma
9. Author Correction: Skp2 dictates cell cycle-dependent metabolic oscillation between glycolysis and TCA cycle
10. The Molecular Biology of Kidney Cancer and Its Clinical Translation into Treatment Strategies
11. EglN2 associates with the NRF1‐PGC1α complex and controls mitochondrial function in breast cancer
12. A genetic mechanism for Tibetan high-altitude adaptation
13. Transformation by the (R)-enantiomer of 2-hydroxyglutarate linked to EGLN activation
14. The von Hippel–Lindau tumour suppressor protein: O2 sensing and cancer
15. Mitochondrial remodeling and ischemic protection by G protein-coupled receptor 35 agonists.
16. Publish houses of brick, not mansions of straw
17. Failure to prolyl hydroxylate hypoxia‐inducible factor α phenocopies VHL inactivation in vivo
18. Recent insights into the molecular pathogenesis of pheochromocytoma and paraganglioma
19. The Concept of Synthetic Lethality in the Context of Anticancer Therapy
20. Degradation of the SCF component Skp2 in cell-cycle phase G1 by the anaphase-promoting complex
21. An intact NEDD8 pathway is required for Cullin‐dependent ubiquitylation in mammalian cells
22. Sensitivity of VHL mutant kidney cancers to HIF2 inhibitors does not require an intact p53 pathway.
23. Structure of an HIF-1α--pVHL complex: hydroxyproline recognition in signaling. (Reports)
24. The p53 gene family
25. Role for the p53 homologue p73 in E2F-1-induced apoptosis
26. THE JEREMIAH METZGER LECTURE: VON HIPPEL-LINDAU DISEASE: INSIGHTS INTO OXYGEN SENSING, CANCER AND DRUGGING THE UNDRUGGABLE.
27. The Molecular Basis of Von Hippel-Lindau Disease
28. p73 is a human p53-related protein that can induce apoptosis
29. Good COP1 or bad COP1? In vivo veritas
30. Clues from cell metabolism: interest in the abnormal metabolism exhibited by cancer cells has been reawakened by the discovery of oncogenic mutations in metabolic enzymes, and by tools that monitor metabolism in living cells. Existing and emerging therapies aim to target this abnormal metabolism in various ways
31. Binding of the Hippel-Lindau tumor suppressor protein to Elongin B and C
32. EglN3 hydroxylase stabilizes BIM-EL linking VHL type 2C mutations to pheochromocytoma pathogenesis and chemotherapy resistance.
33. Histone demethylase KDM6A directly senses oxygen to control chromatin and cell fate.
34. Peptidic degron for IMiD-induced degradation of heterologous proteins.
35. BRCA1-IRIS promotes human tumor progression through PTEN blockade and HIF-1α activation.
36. Autochthonous tumors driven by Rb1 loss have an ongoing requirement for the RBP2 histone demethylase.
37. HIF activation causes synthetic lethality between the VHL tumor suppressor and the EZH1 histone methyltransferase.
38. Inactivation of the PBRM1 tumor suppressor gene amplifies the HIF-response in VHL-/- clear cell renal carcinoma.
39. VHL and Kidney Cancer
40. Molecular Biology of Kidney Cancer.
41. Loss of the retinoblastoma binding protein 2 (RBP2) histone demethylase suppresses tumorigenesis in mice lacking Rb1 or Men1
42. Another p53 doppelganger?
43. Peptidic degron in EID1 is recognized by an SCF E3 ligase complex containing the orphan F-box protein FBXO21.
44. New cancer targets emerging from studies of the Von Hippel-Lindau tumor suppressor protein
45. Senescence triggered by the loss of the VHL tumor suppressor
46. Inhibition of the oxygen sensor PHD2 in the liver improves survival in lactic acidosis by activating the Cori cycle.
47. Molecular Biology of Kidney Cancer.
48. Molecular Biology of Clear Cell Renal Carcinoma.
49. E2F1 as a Target: Promoter-Driven Suicide and Small Molecule Modulators
50. HIFα Targeted for VHL-Mediated Destruction by Proline Hydroxylation: Implications for O 2 Sensing
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