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Chaperone-mediated Autophagy: a Gatekeeper of Neuronal Proteostasis

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Journal Autophagy
Specialty Cell Biology
Date 2021 Jun 10
PMID 34110247
Citations 21
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Abstract

Different types of autophagy co-exist in all mammalian cells, however, the specific contribution of each of these autophagic pathways to the maintenance of cellular proteostasis and cellular function remains unknown. In this work, we have investigated the consequences of failure of chaperone-mediated autophagy (CMA) in neurons and compared the impact, on the neuronal proteome, of CMA loss to that of macroautophagy loss. We found that these autophagic pathways are non-redundant and that CMA is the main one responsible for maintenance of the metastable proteome (the one at risk of aggregation). We demonstrate that loss of CMA, as the one that occurs in aging, has a synergistic effect with the proteotoxicity associated with neurodegenerative conditions such as Alzheimer disease (AD) and, conversely, that, pharmacological enhancement of CMA is effective in improving both behavior and pathology in two different AD mouse models.

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References
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Bourdenx M, Martin-Segura A, Scrivo A, Rodriguez-Navarro J, Kaushik S, Tasset I . Chaperone-mediated autophagy prevents collapse of the neuronal metastable proteome. Cell. 2021; 184(10):2696-2714.e25. PMC: 8152331. DOI: 10.1016/j.cell.2021.03.048. View