Journal of Neuroscience · 1999 · 436 citations · 49 references
Death-inducing LigandsApoptosisImmunologyCell DeathOxidative StressNeuroinflammationInflammationCd95 LigandBrain InjuryNeurologyNeuroimmunologyCell SignalingIschemic SyndromeLpr MiceProgrammed Cell DeathVascular BiologyNeuroprotectionCerebral Blood FlowReperfusion InjuryCell BiologyNecrosisMedicine
Programmed cell death contributes to neuronal degeneration after cerebral ischemia, yet its mechanisms remain unclear. The study investigated whether ischemia‑induced neuronal death involves CD95 and TRAIL death‑ligand/receptor systems. CD95 ligand and TRAIL are expressed in postischemic apoptotic brain regions, recombinant proteins trigger neuronal apoptosis, FK506 blocks their expression and reduces infarct size in CD95‑deficient mice, indicating these ligands mediate ischemia‑induced neuronal death and present therapeutic targets.
Programmed cell death plays an important role in the neuronal degeneration after cerebral ischemia, but the underlying mechanisms are not fully understood. Here we examined, in vivo and in vitro, whether ischemia-induced neuronal death involves death-inducing ligand/receptor systems such as CD95 and tumor necrosis factor-related apoptosis-inducing ligand (TRAIL). After reversible middle cerebral artery occlusion in adult rats, both CD95 ligand and TRAIL were expressed in the apoptotic areas of the postischemic brain. Further recombinant CD95 ligand and TRAIL proteins induced apoptosis in primary neurons and neuron-like cells in vitro. The immunosuppressant FK506, which most effectively protects against ischemic neurodegeneration, prevented postischemic expression of these death-inducing ligands both in vivo and in vitro. FK506 also abolished phosphorylation, but not expression, of the c-Jun transcription factor involved in the transcriptional control of CD95 ligand. Most importantly, in lpr mice expressing dysfunctional CD95, reversible middle cerebral artery occlusion resulted in infarct volumes significantly smaller than those found in wild-type animals. These results suggest an involvement of CD95 ligand and TRAIL in the pathophysiology of postischemic neurodegeneration and offer alternative strategies for the treatment of cardiovascular brain disease.
49
The stress-activated protein kinase subfamily of c-Jun kinases
John Kyriakis, Papia T. Banerjee, Eleni Nikolakaki et al. · Nature · 1994 · 2.6K citations