Publication | Closed Access
S-Nitrosylation of Matrix Metalloproteinases: Signaling Pathway to Neuronal Cell Death
945
Citations
21
References
2002
Year
ApoptosisCell DeathCellular PhysiologyOxidative StressNeuroinflammationInflammationReactive Nitrogen SpecieMatrix MetalloproteinasesBrain InjuryNeurologyNeuropathologyCell SignalingMmp ActivationIschemic SyndromeMolecular NeuroscienceBiochemistryNeuroprotectionCerebral Blood FlowReperfusion InjuryCell BiologyNeurodegenerative DiseasesSignal TransductionMetalloproteinMass SpectrometryNeuroscienceCellular BiochemistryMedicineNitrosative Stress
Matrix metalloproteinases (MMPs) are implicated in the pathogenesis of neurodegenerative diseases and stroke. However, the mechanism of MMP activation remains unclear. We report that MMP activation involves S-nitrosylation. During cerebral ischemia in vivo, MMP-9 colocalized with neuronal nitric oxide synthase. S-Nitrosylation activated MMP-9 in vitro and induced neuronal apoptosis. Mass spectrometry identified the active derivative of MMP-9, both in vitro and in vivo, as a stable sulfinic or sulfonic acid, whose formation was triggered by S-nitrosylation. These findings suggest a potential extracellular proteolysis pathway to neuronal cell death in which S-nitrosylation activates MMPs, and further oxidation results in a stable posttranslational modification with pathological activity.
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