Proceedings of the National Academy of Sciences · 2014 · 218 citations · 35 references
Molecular BiologyCell DeathNeurochemical BiomarkersSynaptic SignalingOxidative StressAlzheimer's DiseaseProtein ExpressionProtein FoldingTau SumoylationDegenerative PathologyProtein MisfoldingProtein DegradationCell SignalingMolecular SignalingProtein Quality ControlProtein FunctionMolecular NeuroscienceMolecular PhysiologyBiochemistryCell BiologyProtein PhosphorylationMolecular MedicineProtective MechanismsSynaptic PlasticityNeurodegenerative DiseasesSignal TransductionTau ProteinsUbiquitination-mediated Tau DegradationNatural SciencesCellular BiochemistryMedicine
Intracellular accumulation of the abnormally modified tau is hallmark pathology of Alzheimer's disease (AD), but the mechanism leading to tau aggregation is not fully characterized. Here, we studied the effects of tau SUMOylation on its phosphorylation, ubiquitination, and degradation. We show that tau SUMOylation induces tau hyperphosphorylation at multiple AD-associated sites, whereas site-specific mutagenesis of tau at K340R (the SUMOylation site) or simultaneous inhibition of tau SUMOylation by ginkgolic acid abolishes the effect of small ubiquitin-like modifier protein 1 (SUMO-1). Conversely, tau hyperphosphorylation promotes its SUMOylation; the latter in turn inhibits tau degradation with reduction of solubility and ubiquitination of tau proteins. Furthermore, the enhanced SUMO-immunoreactivity, costained with the hyperphosphorylated tau, is detected in cerebral cortex of the AD brains, and β-amyloid exposure of rat primary hippocampal neurons induces a dose-dependent SUMOylation of the hyperphosphorylated tau. Our findings suggest that tau SUMOylation reciprocally stimulates its phosphorylation and inhibits the ubiquitination-mediated tau degradation, which provides a new insight into the AD-like tau accumulation.
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Inge Grundke‐Iqbal, Khurshid Iqbal, Y C Tung et al. · Proceedings of the National Academy of Sciences · 1986 · 3.6K citations · Full text
Molecular Biology, Cytoskeleton, Microtubule-associated Protein Tau +19
Virginia M.‐Y. Lee, Michel Goedert, John Q. Trojanowski · Annual Review of Neuroscience · 2001 · 2.3K citations