Expression of WIPI2B counteracts age-related decline in autophagosome biogenesis in neurons
pmid: 31309927
pmc: PMC6634969
Expression of WIPI2B counteracts age-related decline in autophagosome biogenesis in neurons
Autophagy defects are implicated in multiple late-onset neurodegenerative diseases including Amyotrophic Lateral Sclerosis (ALS) and Alzheimer’s, Huntington’s, and Parkinson’s diseases. Since aging is the most common shared risk factor in neurodegeneration, we assessed rates of autophagy in mammalian neurons during aging. We identified a significant decrease in the rate of constitutive autophagosome biogenesis during aging and observed pronounced morphological defects in autophagosomes in neurons from aged mice. While early stages of autophagosome formation were unaffected, we detected the frequent production of stalled LC3B-negative isolation membranes in neurons from aged mice. These stalled structures recruited the majority of the autophagy machinery, but failed to develop into LC3B-positive autophagosomes. Importantly, ectopically expressing WIPI2B effectively restored autophagosome biogenesis in aged neurons. This rescue is dependent on the phosphorylation state of WIPI2B at the isolation membrane, suggesting a novel therapeutic target in age-associated neurodegeneration.
- The Francis Crick Institute United Kingdom
- University of Pennsylvania United States
Model organisms, autophagy, Aging, autophagosome biogenesis, QH301-705.5, Science, neurons, Autophagy-Related Proteins, Gene Expression, Biochemistry & Proteomics, Imaging, Mice, Signalling & Oncogenes, WIPI2B, Autophagy, Animals, Biology (General), Neurons, Chemical Biology & High Throughput, aging, Q, R, Autophagosomes, Cell Biology, Phosphate-Binding Proteins, Medicine
Model organisms, autophagy, Aging, autophagosome biogenesis, QH301-705.5, Science, neurons, Autophagy-Related Proteins, Gene Expression, Biochemistry & Proteomics, Imaging, Mice, Signalling & Oncogenes, WIPI2B, Autophagy, Animals, Biology (General), Neurons, Chemical Biology & High Throughput, aging, Q, R, Autophagosomes, Cell Biology, Phosphate-Binding Proteins, Medicine
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