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Amyloid β Induces Lipid Droplet-Mediated Microglial Dysfunction in Alzheimer’s Disease

Several microglia-expressed genes have emerged as top risk variants for Alzheimer’s disease (AD). Impaired microglial phagocytosis is one of the main proposed outcomes by which these AD-risk genes may contribute to neurodegeneration, but the mechanisms translating genetic association to cellular dys...

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Autores principales: Prakash, Priya, Manchanda, Palak, Paouri, Evi, Bisht, Kanchan, Sharma, Kaushik, Wijewardhane, Prageeth R., Randolph, Caitlin E., Clark, Matthew G., Fine, Jonathan, Thayer, Elizabeth A., Crockett, Alexis, Gasmi, Nadia, Stanko, Sarah, Prayson, Richard A., Zhang, Chi, Davalos, Dimitrios, Chopra, Gaurav
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10274698/
https://www.ncbi.nlm.nih.gov/pubmed/37333071
http://dx.doi.org/10.1101/2023.06.04.543525
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author Prakash, Priya
Manchanda, Palak
Paouri, Evi
Bisht, Kanchan
Sharma, Kaushik
Wijewardhane, Prageeth R.
Randolph, Caitlin E.
Clark, Matthew G.
Fine, Jonathan
Thayer, Elizabeth A.
Crockett, Alexis
Gasmi, Nadia
Stanko, Sarah
Prayson, Richard A.
Zhang, Chi
Davalos, Dimitrios
Chopra, Gaurav
author_facet Prakash, Priya
Manchanda, Palak
Paouri, Evi
Bisht, Kanchan
Sharma, Kaushik
Wijewardhane, Prageeth R.
Randolph, Caitlin E.
Clark, Matthew G.
Fine, Jonathan
Thayer, Elizabeth A.
Crockett, Alexis
Gasmi, Nadia
Stanko, Sarah
Prayson, Richard A.
Zhang, Chi
Davalos, Dimitrios
Chopra, Gaurav
author_sort Prakash, Priya
collection PubMed
description Several microglia-expressed genes have emerged as top risk variants for Alzheimer’s disease (AD). Impaired microglial phagocytosis is one of the main proposed outcomes by which these AD-risk genes may contribute to neurodegeneration, but the mechanisms translating genetic association to cellular dysfunction remain unknown. Here we show that microglia form lipid droplets (LDs) upon exposure to amyloid-beta (Aβ), and that their LD load increases with proximity to amyloid plaques in brains from human patients and the AD mouse model 5xFAD. LD formation is dependent upon age and disease progression and is more prominent in the hippocampus in mice and humans. Despite variability in LD load between microglia from male versus female animals and between cells from different brain regions, LD-laden microglia exhibited a deficit in Aβ phagocytosis. Unbiased lipidomic analysis identified a substantial decrease in free fatty acids (FFAs) and a parallel increase in triacylglycerols (TAGs) as the key metabolic transition underlying LD formation. We demonstrate that DGAT2, a key enzyme for the conversion of FFAs to TAGs, promotes microglial LD formation, is increased in microglia from 5xFAD and human AD brains, and that inhibiting DGAT2 improved microglial uptake of Aβ. These findings identify a new lipid-mediated mechanism underlying microglial dysfunction that could become a novel therapeutic target for AD.
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spelling pubmed-102746982023-06-17 Amyloid β Induces Lipid Droplet-Mediated Microglial Dysfunction in Alzheimer’s Disease Prakash, Priya Manchanda, Palak Paouri, Evi Bisht, Kanchan Sharma, Kaushik Wijewardhane, Prageeth R. Randolph, Caitlin E. Clark, Matthew G. Fine, Jonathan Thayer, Elizabeth A. Crockett, Alexis Gasmi, Nadia Stanko, Sarah Prayson, Richard A. Zhang, Chi Davalos, Dimitrios Chopra, Gaurav bioRxiv Article Several microglia-expressed genes have emerged as top risk variants for Alzheimer’s disease (AD). Impaired microglial phagocytosis is one of the main proposed outcomes by which these AD-risk genes may contribute to neurodegeneration, but the mechanisms translating genetic association to cellular dysfunction remain unknown. Here we show that microglia form lipid droplets (LDs) upon exposure to amyloid-beta (Aβ), and that their LD load increases with proximity to amyloid plaques in brains from human patients and the AD mouse model 5xFAD. LD formation is dependent upon age and disease progression and is more prominent in the hippocampus in mice and humans. Despite variability in LD load between microglia from male versus female animals and between cells from different brain regions, LD-laden microglia exhibited a deficit in Aβ phagocytosis. Unbiased lipidomic analysis identified a substantial decrease in free fatty acids (FFAs) and a parallel increase in triacylglycerols (TAGs) as the key metabolic transition underlying LD formation. We demonstrate that DGAT2, a key enzyme for the conversion of FFAs to TAGs, promotes microglial LD formation, is increased in microglia from 5xFAD and human AD brains, and that inhibiting DGAT2 improved microglial uptake of Aβ. These findings identify a new lipid-mediated mechanism underlying microglial dysfunction that could become a novel therapeutic target for AD. Cold Spring Harbor Laboratory 2023-06-06 /pmc/articles/PMC10274698/ /pubmed/37333071 http://dx.doi.org/10.1101/2023.06.04.543525 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Prakash, Priya
Manchanda, Palak
Paouri, Evi
Bisht, Kanchan
Sharma, Kaushik
Wijewardhane, Prageeth R.
Randolph, Caitlin E.
Clark, Matthew G.
Fine, Jonathan
Thayer, Elizabeth A.
Crockett, Alexis
Gasmi, Nadia
Stanko, Sarah
Prayson, Richard A.
Zhang, Chi
Davalos, Dimitrios
Chopra, Gaurav
Amyloid β Induces Lipid Droplet-Mediated Microglial Dysfunction in Alzheimer’s Disease
title Amyloid β Induces Lipid Droplet-Mediated Microglial Dysfunction in Alzheimer’s Disease
title_full Amyloid β Induces Lipid Droplet-Mediated Microglial Dysfunction in Alzheimer’s Disease
title_fullStr Amyloid β Induces Lipid Droplet-Mediated Microglial Dysfunction in Alzheimer’s Disease
title_full_unstemmed Amyloid β Induces Lipid Droplet-Mediated Microglial Dysfunction in Alzheimer’s Disease
title_short Amyloid β Induces Lipid Droplet-Mediated Microglial Dysfunction in Alzheimer’s Disease
title_sort amyloid β induces lipid droplet-mediated microglial dysfunction in alzheimer’s disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10274698/
https://www.ncbi.nlm.nih.gov/pubmed/37333071
http://dx.doi.org/10.1101/2023.06.04.543525
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