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94 results on '"MIXED LINEAGE KINASE"'

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1. The Expression Profiles and Clinical Significance of Mixed Lineage Kinases in Glioma.

2. Broad Spectrum Mixed Lineage Kinase Type 3 Inhibition and HIV-1 Persistence in Macrophages.

3. Pore-forming proteins as drivers of membrane permeabilization in cell death pathways

4. Mixed lineage kinase-3 prevents cardiac dysfunction and structural remodeling with pressure overload.

7. MLKL: Functions beyond serving as the Executioner of Necroptosis

9. Identification of MYC as an antinecroptotic protein that stifles RIPK1–RIPK3 complex formation

10. Beclin 1 functions as a negative modulator of MLKL oligomerisation by integrating into the necrosome complex

11. Inhibition of the pseudokinase MLKL alters extracellular vesicle release and reduces tumor growth in glioblastoma

12. Association of plasma level of Mixed lineage kinase domain-like protein with severity and outcome of sepsis

13. Hepatology Basic Science

14. Antioxidant and food additive BHA prevents TNF cytotoxicity by acting as a direct RIPK1 inhibitor

15. ZAK induces cardiomyocyte hypertrophy and brain natriuretic peptide expression via p38/JNK signaling and GATA4/c-Jun transcriptional factor activation.

16. Necrosome-positive granulovacuolar degeneration is associated with TDP-43 pathological lesions in the hippocampus of ALS/FTLD cases

17. Loss of MLKL (Mixed Lineage Kinase Domain-Like Protein) Decreases Necrotic Core but Increases Macrophage Lipid Accumulation in Atherosclerosis

18. Regulation of Necroptosis by Phospholipids and Sphingolipids

19. Mixed lineage kinase 3 requires a functional CRIB domain for regulation of blood pressure, cardiac hypertrophy, and left ventricular function.

20. Zinc Oxide Nanoparticles–Induced Intercellular Adhesion Molecule 1 Expression Requires Rac1/Cdc42, Mixed Lineage Kinase 3, and c-Jun N-Terminal Kinase Activation in Endothelial Cells.

21. Nuclear RIPK3 and MLKL contribute to cytosolic necrosome formation and necroptosis

22. Impaired regenerative response of primary sensory neurons in ZPK/DLK gene-trap mice

23. A ubiquitin-conjugating enzyme, ube2d3.2, regulates xMLK2 and pronephros formation in Xenopus.

24. Mixed lineage kinases (MLKs): a role in dendritic cells, inflammation and immunity?

25. Sorafenib inhibits therapeutic induction of necroptosis in acute leukemia cells

26. The degradation of mixed lineage kinase domain-like protein promotes neuroprotection after ischemic brain injury

27. CEP-11004, an inhibitor of the SAPK/JNK pathway, reduces TNF-α release from lipopolysaccharide-treated cells and mice

28. Inhibition of microglial inflammation by the MLK inhibitor CEP-1347.

29. Transgenic mice with cardiac-specific over-expression of MLK7 have increased mortality when exposed to chronic β-adrenergic stimulation

30. Inhibition of mixed lineage kinase 3 attenuates MPP+-induced neurotoxicity in SH-SY5Y cells

31. Necroptosis in immuno-oncology and cancer immunotherapy

32. Effect of C-terminal truncations on MLK7 catalytic activity and JNK activation

33. Necrosome complex detected in granulovacuolar degeneration is associated with neuronal loss in Alzheimer's disease

34. Small-Molecule Inhibitors of Necroptosis: Current Status and Perspectives

35. Abstract 625: Mixed Lineage Kinase 3 Regulates Blood Pressure Through Kinase Independent Effects in the Vasculature

38. The pseudokinase MLKL mediates programmed hepatocellular necrosis independently of RIPK3 during hepatitis

39. Dual leucine zipper kinase (MAP3K12) modulators: a patent review (2010–2015)

40. HSP70 promotes MLKL polymerization and necroptosis

41. The molecular machinery of regulated cell death

42. Mixed lineage kinase-3 prevents cardiac dysfunction and structural remodeling with pressure overload

43. Mixed Lineage Kinase 3 Regulates Blood Pressure through Kinase Independent Effects in the Vasculature

45. Treatment with mRNA coding for the necroptosis mediator MLKL induces antitumor immunity directed against neo-epitopes

46. Methods for Studying TNF-Mediated Necroptosis in Cultured Cells

47. Detection of MLKL Oligomerization During Programmed Necrosis

48. Essential versus accessory aspects of cell death: recommendations of the NCCD 2015

49. The design and SAR of a novel series of 2-aminopyridine based LRRK2 inhibitors

50. Discovery of a new class of highly potent necroptosis inhibitors targeting the mixed lineage kinase domain-like protein

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