An Alzheimer’s disease risk variant inTTC3modifies the actin cytoskeleton organization and the PI3K-Akt signaling pathway in iPSC-derived forebrain neurons

Author:

Cukier Holly N.ORCID,Duarte Carolina L.,Laverde-Paz Mayra J.,Simon Shaina A.,Van Booven Derek J.,Miyares Amanda T.,Whitehead Patrice L.,Hamilton-Nelson Kara L.,Adams Larry D.,Carney Regina M.,Cuccaro Michael L.,Vance Jeffery M.,Pericak-Vance Margaret A.,Griswold Anthony J.,Dykxhoorn Derek M.

Abstract

AbstractA missense variant in thetetratricopeptide repeat domain 3(TTC3) gene (rs377155188, p.S1038C, NM_003316.4:c.3113C>G) was found to segregate with disease in a multigenerational family with late onset Alzheimer’s disease. This variant was introduced into induced pluripotent stem cells (iPSCs) derived from a cognitively intact individual using CRISPR genome editing and the resulting isogenic pair of iPSC lines were differentiated into cortical neurons. Transcriptome analysis showed an enrichment for genes involved in axon guidance, regulation of actin cytoskeleton, and GABAergic synapse. Functional analysis showed that the TTC3 p.S1038C iPSC-derived neuronal progenitor cells had altered 3D morphology and increased migration, while the corresponding neurons had longer neurites, increased branch points, and altered expression levels of synaptic proteins. Pharmacological treatment with small molecules that target the actin cytoskeleton could revert many of these cellular phenotypes, suggesting a central role for actin in mediating the cellular phenotypes associated with the TTC3 p.S1038C variant.HighlightsThe AD risk variant TTC3 p.S1038C reduces the expression levels ofTTC3The variant modifies the expression of AD specific genesBACE1,INPP5F, andUNC5CNeurons with the variant are enriched for genes in the PI3K-Akt pathwayiPSC-derived neurons with the alteration have increased neurite length and branchingThe variant interferes with actin cytoskeleton and is ameliorated by Cytochalasin D

Publisher

Cold Spring Harbor Laboratory

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