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Apolipoprotein E regulates lipid metabolism and α-synuclein pathology in human iPSC-derived cerebral organoids

Authors :
Guojun Bu
Wenyan Lu
Xianlin Han
Jing Zhao
Xue Wang
Mary D. Davis
Meixia Pan
Nilufer Ertekin-Taner
Steven G. Younkin
Chia Chen Liu
Fuyao Li
Zbigniew K. Wszolek
Yuka A. Martens
Yan W. Asmann
Ziying Xu
Yuan Fu
Kai Chen
Neill R. Graff-Radford
Francis Shue
David A. Brafman
Takahisa Kanekiyo
Yingxue Ren
Dennis W. Dickson
Source :
Acta Neuropathologica, Acta Neuropathol
Publication Year :
2021
Publisher :
Springer Berlin Heidelberg, 2021.

Abstract

APOE4 is a strong genetic risk factor for Alzheimer’s disease and Dementia with Lewy bodies; however, how its expression impacts pathogenic pathways in a human-relevant system is not clear. Here using human iPSC-derived cerebral organoid models, we find that APOE deletion increases α-synuclein (αSyn) accumulation accompanied with synaptic loss, reduction of GBA levels, lipid droplet accumulation and dysregulation of intracellular organelles. These phenotypes are partially rescued by exogenous apoE2 and apoE3, but not apoE4. Lipidomics analysis detects the increased fatty acid utilization and cholesterol ester accumulation in apoE-deficient cerebral organoids. Furthermore, APOE4 cerebral organoids have increased αSyn accumulation compared to those with APOE3. Carrying APOE4 also increases apoE association with Lewy bodies in postmortem brains from patients with Lewy body disease. Our findings reveal the predominant role of apoE in lipid metabolism and αSyn pathology in iPSC-derived cerebral organoids, providing mechanistic insights into how APOE4 drives the risk for synucleinopathies.

Details

Language :
English
ISSN :
14320533 and 00016322
Volume :
142
Issue :
5
Database :
OpenAIRE
Journal :
Acta Neuropathologica
Accession number :
edsair.doi.dedup.....1b6674131ee16462e9d4bf9698efe348