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Your search keyword '"Kayagaki, Nobuhiko"' showing total 45 results

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45 results on '"Kayagaki, Nobuhiko"'

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1. Control of Cell Death in Health and Disease.

2. Cell death.

3. Epigenetic and transcriptional control of gasdermins.

4. Inhibiting membrane rupture with NINJ1 antibodies limits tissue injury.

5. Dying cells fan the flames of inflammation.

6. Shigella ubiquitin ligase IpaH7.8 targets gasdermin D for degradation to prevent pyroptosis and enable infection.

7. Evolutionary loss of inflammasomes in the Carnivora and implications for the carriage of zoonotic infections.

8. Selective activation of PFKL suppresses the phagocytic oxidative burst.

9. Discovery of a caspase cleavage motif antibody reveals insights into noncanonical inflammasome function.

10. NINJ1 mediates plasma membrane rupture during lytic cell death.

11. Rescue from a fiery death: A therapeutic endeavor.

13. MCC950/CRID3 potently targets the NACHT domain of wild-type NLRP3 but not disease-associated mutants for inflammasome inhibition.

14. IRF2 transcriptionally induces GSDMD expression for pyroptosis.

15. Pathogen blockade of TAK1 triggers caspase-8-dependent cleavage of gasdermin D and cell death.

16. Caspase-11 auto-proteolysis is crucial for noncanonical inflammasome activation.

17. ASC- and caspase-8-dependent apoptotic pathway diverges from the NLRC4 inflammasome in macrophages.

18. Structure-Based Design of Tricyclic NF-κB Inducing Kinase (NIK) Inhibitors That Have High Selectivity over Phosphoinositide-3-kinase (PI3K).

19. The Yersinia pestis Effector YopM Inhibits Pyrin Inflammasome Activation.

20. GsdmD p30 elicited by caspase-11 during pyroptosis forms pores in membranes.

21. Does caspase-12 suppress inflammasome activation?

22. Caspase-11 cleaves gasdermin D for non-canonical inflammasome signalling.

23. Caspase-11: arming the guards against bacterial infection.

24. Deubiquitinase DUBA is a post-translational brake on interleukin-17 production in T cells.

25. Interleukin-22 induces interleukin-18 expression from epithelial cells during intestinal infection.

26. Caspase-11 activation requires lysis of pathogen-containing vacuoles by IFN-induced GTPases.

27. Noncanonical inflammasome activation by intracellular LPS independent of TLR4.

28. Phosphorylation of NLRC4 is critical for inflammasome activation.

29. Caspase-11 increases susceptibility to Salmonella infection in the absence of caspase-1.

30. Phosphorylation-dependent activity of the deubiquitinase DUBA.

31. Non-canonical inflammasome activation targets caspase-11.

32. Absent in melanoma 2 is required for innate immune recognition of Francisella tularensis.

33. DUBA: a deubiquitinase that regulates type I interferon production.

34. IAP antagonists induce autoubiquitination of c-IAPs, NF-kappaB activation, and TNFalpha-dependent apoptosis.

35. Yersinia virulence factor YopJ acts as a deubiquitinase to inhibit NF-kappa B activation.

36. TNF-related apoptosis-inducing ligand (TRAIL)/Apo2L suppresses experimental autoimmune encephalomyelitis in mice.

37. Sensitization of human glioblastomas to tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) by NF-kappaB inhibitors.

38. Molecular cloning, functional characterization, and enzyme-linked immunosorbent assay of cynomolgus monkey Fas ligand.

39. TNF-related apoptosis-inducing ligand (TRAIL) frequently induces apoptosis in Philadelphia chromosome-positive leukemia cells.

40. BAFF/BLyS receptor 3 binds the B cell survival factor BAFF ligand through a discrete surface loop and promotes processing of NF-kappaB2.

41. Suppression of antibody production by TNF-related apoptosis-inducing ligand (TRAIL).

42. Characterization of the in vivo function of TNF-alpha-related apoptosis-inducing ligand, TRAIL/Apo2L, using TRAIL/Apo2L gene-deficient mice.

43. Role of Fas/FasL pathway in the activation of infiltrating cells in murine acute myocarditis caused by Coxsackievirus B3.

44. Critical role for tumor necrosis factor-related apoptosis-inducing ligand in immune surveillance against tumor development.

45. Multiple pathways of TWEAK-induced cell death.

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