APOE4 exacerbates synapse loss and neurodegeneration in Alzheimer’s disease patient iPSC-derived cerebral organoids

Author:

Zhao Jing,Fu Yuan,Yamazaki YuORCID,Ren Yingxue,Davis Mary D.,Liu Chia-ChenORCID,Lu Wenyan,Wang Xue,Chen Kai,Cherukuri Yesesri,Jia Lin,Martens Yuka A.ORCID,Job Lucy,Shue FrancisORCID,Nguyen Thanh ThanhORCID,Younkin Steven G.,Graff-Radford Neill R.,Wszolek Zbigniew K.,Brafman David A.,Asmann Yan W.,Ertekin-Taner Nilüfer,Kanekiyo Takahisa,Bu GuojunORCID

Abstract

AbstractAPOE4 is the strongest genetic risk factor associated with late-onset Alzheimer’s disease (AD). To address the underlying mechanism, we develop cerebral organoid models using induced pluripotent stem cells (iPSCs) with APOE ε3/ε3 or ε4/ε4 genotype from individuals with either normal cognition or AD dementia. Cerebral organoids from AD patients carrying APOE ε4/ε4 show greater apoptosis and decreased synaptic integrity. While AD patient-derived cerebral organoids have increased levels of Aβ and phosphorylated tau compared to healthy subject-derived cerebral organoids, APOE4 exacerbates tau pathology in both healthy subject-derived and AD patient-derived organoids. Transcriptomics analysis by RNA-sequencing reveals that cerebral organoids from AD patients are associated with an enhancement of stress granules and disrupted RNA metabolism. Importantly, isogenic conversion of APOE4 to APOE3 attenuates the APOE4-related phenotypes in cerebral organoids from AD patients. Together, our study using human iPSC-organoids recapitulates APOE4-related phenotypes and suggests APOE4-related degenerative pathways contributing to AD pathogenesis.

Funder

Alzheimer’s Association

U.S. Department of Health & Human Services | NIH | National Institute on Aging

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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