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Published on: October 10, 2017
Macroautophagy deficiency mediates age-dependent neurodegeneration through a phospho-tau pathway
Keiichi Inoue1, Joanne Rispoli, Hanoch Kaphzan
1Departments of Pathology and Neurology, Taub Institute, Columbia University Medical Center, New York, NY 10032, USA.
Background:
Macroautophagy is an evolutionarily conserved mechanism for bulk intracellular degradation of proteins and organelles. Pathological studies have implicated macroautophagy defects in human neurodegenerative disorders of aging including Alzheimer's disease and tauopathies. Neuronal deficiency of macroautophagy throughout mouse embryonic development results in neurodevelopmental defects and early postnatal mortality. However, the role of macroautophagy in mature CNS neurons, and the relationship with human disease neuropathology, remains unclear. Here we describe mice deficient in an essential macroautophagy component, Atg7, specifically within postnatal CNS neurons.
Results:
Postnatal forebrain-specific Atg7 conditional knockout (cKO) mice displayed age-dependent neurodegeneration and ubiquitin- and p62-positive inclusions. Phosphorylated tau was significantly accumulated in Atg7 cKO brains, but neurofibrillary tangles that typify end-stage human tauopathy were not apparent. A major tau kinase, glycogen synthase kinase 3β (GSK3β), was also accumulated in Atg7 cKO brains. Chronic pharmacological inhibition of tau phosphorylation, or genetic deletion of tau, significantly rescued Atg7-deficiency-mediated neurodegeneration, but did not suppress inclusion formation.
Conclusions:
These data elucidate a role for macroautophagy in the long-term survival and physiological function of adult CNS neurons. Neurodegeneration in the context of macroautophagy deficiency is mediated through a phospho-tau pathway.
Insights
Macroautophagy is crucial for adult neuron survival. Its deficiency in the central nervous system (CNS) leads to neurodegeneration via a phospho-tau pathway, impacting aging brain disorders.
Area of Science:
- Neuroscience
- Cell Biology
- Molecular Biology
Background:
- Macroautophagy is a key cellular degradation process.
- Defects in macroautophagy are linked to neurodegenerative diseases like Alzheimer's.
- The role of macroautophagy in mature neurons is not fully understood.
Purpose of the Study:
- To investigate the function of macroautophagy in postnatal CNS neurons.
- To understand the link between macroautophagy deficiency and neurodegeneration in adult mice.
Main Methods:
- Generated postnatal forebrain-specific Atg7 conditional knockout (cKO) mice.
- Analyzed neurodegeneration, protein inclusions, and tau pathology.
- Investigated the effect of inhibiting tau phosphorylation or deleting tau.
Main Results:
- Atg7 cKO mice showed age-dependent neurodegeneration with ubiquitin- and p62-positive inclusions.
- Accumulation of phosphorylated tau and GSK3β was observed in Atg7 cKO brains.
- Inhibition of tau phosphorylation or tau deletion rescued neurodegeneration but not inclusion formation.
Conclusions:
- Macroautophagy is essential for the long-term survival and function of adult CNS neurons.
- Neurodegeneration due to macroautophagy deficiency is mediated by a phospho-tau pathway.
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