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1. Emerging role of PARP‐1 and PARthanatos in ischemic stroke

2. ZMYND8 is a master regulator of 27-hydroxycholesterol that promotes tumorigenicity of breast cancer stem cells

3. GPT2 Is Induced by Hypoxia-Inducible Factor (HIF)-2 and Promotes Glioblastoma Growth

4. AIF3 splicing switch triggers neurodegeneration

5. Cutting Edge: Hypoxia-Induced Ubc9 Promoter Hypermethylation Regulates IL-17 Expression in Ulcerative Colitis

6. LncIHAT Is Induced by Hypoxia-Inducible Factor 1 and Promotes Breast Cancer Progression

7. Multifaceted role of branched-chain amino acid metabolism in cancer

8. CHD4 Promotes Breast Cancer Progression as a Coactivator of Hypoxia-Inducible Factors

9. HIF2-Induced Long Noncoding RNA RAB11B-AS1 Promotes Hypoxia-Mediated Angiogenesis and Breast Cancer Metastasis

10. MIF promotes neurodegeneration and cell death via its nuclease activity following traumatic brain injury

11. MIF is a 3’ flap nuclease that facilitates DNA replication and promotes tumor growth

12. ZMYND8 Expression in Breast Cancer Cells Blocks T-Lymphocyte Surveillance to Promote Tumor Growth

13. ZMYND8 acetylation mediates HIF-dependent breast cancer progression and metastasis

14. Epigenetic regulators: multifunctional proteins modulating hypoxia-inducible factor-α protein stability and activity

15. In vivo assessment of increased oxidation of branched-chain amino acids in glioblastoma

16. PRDX2 and PRDX4 are negative regulators of hypoxia-inducible factors under conditions of prolonged hypoxia

17. Hypoxia-inducible factor 1 mediates TAZ expression and nuclear localization to induce the breast cancer stem cell phenotype

18. Hypoxia-inducible factors enhance glutamate signaling in cancer cells

19. PARP-1 and its associated nucleases in DNA damage response

20. Ganetespib blocks HIF-1 activity and inhibits tumor growth, vascularization, stem cell maintenance, invasion, and metastasis in orthotopic mouse models of triple-negative breast cancer

21. Hypoxia-inducible factor 1 mediates increased expression of NADPH oxidase-2 in response to intermittent hypoxia

22. Pyruvate kinase M2 regulates glucose metabolism by functioning as a coactivator for hypoxia-inducible factor 1 in cancer cells

23. Metabolic reprogramming by HIF-1 promotes the survival of bone marrow–derived angiogenic cells in ischemic tissue

24. Protease-activated receptors in the brain: Receptor expression, activation, and functions in neurodegeneration and neuroprotection

25. Trypsin and trypsin-like proteases in the brain: Proteolysis and cellular functions

26. Systemic delivery of microencapsulated 3-bromopyruvate for the therapy of pancreatic cancer

27. HIF repressors under chronic hypoxia

28. Hypoxia-inducible factors and RAB22A mediate formation of microvesicles that stimulate breast cancer invasion and metastasis

29. Hypoxia-inducible factors regulate human and rat cystathionine β-synthase gene expression

30. Hypoxia-inducible factor–dependent breast cancer–mesenchymal stem cell bidirectional signaling promotes metastasis

31. Histone demethylase JMJD2C is a coactivator for hypoxia-inducible factor 1 that is required for breast cancer progression

32. Emerging roles of PKM2 in cell metabolism and cancer progression

33. Proteinase-activated receptors, nucleotide P2Y receptors, and μ-opioid receptor-1B are under the control of the type I transmembrane proteins p23 and p24A in post-Golgi trafficking

34. Pyruvate kinase M2 is a PHD3-stimulated coactivator for hypoxia-inducible factor 1

35. MCM proteins are negative regulators of hypoxia-inducible factor 1

36. Activation of protease-activated receptors in astrocytes evokes a novel neuroprotective pathway through release of chemokines of the growth-regulated oncogene/cytokine-induced neutrophil chemoattractant family

37. p24A, a type I transmembrane protein, controls ARF1-dependent resensitization of protease-activated receptor-2 by influence on receptor trafficking

38. The role of calcium in protease-activated receptor-induced secretion of chemokine GRO/CINC-1 in rat brain astrocytes

39. Proteinase-activated receptor-1 and -2 induce the release of chemokine GRO/CINC-1 from rat astrocytes via differential activation of JNK isoforms, evoking multiple protective pathways in brain

40. Mesotrypsin, a brain trypsin, activates selectively proteinase-activated receptor-1, but not proteinase-activated receptor-2, in rat astrocytes

41. Protease-activated receptor-1 protects rat astrocytes from apoptotic cell death via JNK-mediated release of the chemokine GRO/CINC-1

42. Jab1, a novel protease-activated receptor-2 (PAR-2)-interacting protein, is involved in PAR-2-induced activation of activator protein-1

43. Two types of protease-activated receptors (PAR-1 and PAR-2) mediate calcium signaling in rat retinal ganglion cells RGC-5

44. Control of TH17/Treg Balance by Hypoxia-Inducible Factor 1

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