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Series GSE117586 Query DataSets for GSE117586
Status Public on Jan 29, 2019
Title REST and Neural Gene Network Dysregulation in iPS Cell Models of Alzheimer’s Disease (Affymetrix NPC data set)
Organism Homo sapiens
Experiment type Expression profiling by array
Summary Alzheimer’s disease (AD) is preceded by a long prodromal period of decades during which pathology accumulates in the brain prior to the onset of dementia. The molecular basis of these changes as well as how and when they start are unclear. Here we have analyzed neural progenitor (NP) cells and neurons generated from induced pluripotent stem cells (iPSCs) from individuals with sporadic AD (AD) and age-matched controls. Transcriptome analysis does not distinguish between iPSCs from individuals with SAD and age-matched controls, but shows major differences in iPSC-derived NP cells and neurons in gene networks related to neuronal differentiation, neurogenesis and synaptic transmission. SAD NP cells exhibit accelerated neuronal differentiation, leading to the generation of neurons with increased synapse formation and electrical excitability. Network analysis of the transcriptome implicates the transcriptional repressor REST/NRSF and two components of the polycomb repressive complex 2, SUZ12 and EZH2. Accelerated differentiation of SAD NP cells was reversed by exogenous REST expression and mimicked in normal NP cells by REST knockdown. The phenotype of accelerated neural differentiation was recapitulated in NP cells and cerebral organoids derived from gene-edited iPSC lines that express apolipoprotein E4 (APOE4), the major genetic risk factor for AD. Network analysis of the APOE4-related transcriptome again showed reduced function of REST, EZH2 and SUZ12 to be the major predicted regulatory changes. Reduced function of the REST repressor was due to reduced nuclear translocation and chromatin binding, and was associated with disruption of the nuclear membrane and lamina in SAD and APOE4 NP cells. Thus, impaired function of specific transcription factors and changes in nuclear architecture may be among the earliest events in the pathogenesis of AD.
 
Overall design Comparison of SAD (n=5) and NL (n=5) NPCs.
 
Contributor(s) Drake D, Feldman HM, Lu T, Bishop N, Yankner BA
Citation(s) 30699343
Submission date Jul 24, 2018
Last update date Mar 06, 2019
Contact name Derek Drake
Organization name Harvard Medical School
Department Genetics
Lab Yankner
Street address 77 Avenue Louis Pasteur
City Boston
State/province MA
ZIP/Postal code 02115
Country USA
 
Platforms (1)
GPL25371 [HG-U133_Plus_2] Affymetrix Human Genome U133 Plus 2.0 Array [CDF: Brainarray HGU133Plus2_Hs_ENSG_22]
Samples (10)
GSM3304289 NP_NL1.1
GSM3304290 NP_NL2.1
GSM3304291 NP_NL3.1
This SubSeries is part of SuperSeries:
GSE117589 REST and Neural Gene Network Dysregulation in iPS Cell Models of Alzheimer’s Disease
Relations
BioProject PRJNA482603

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE117586_RAW.tar 67.4 Mb (http)(custom) TAR (of CEL)
Processed data included within Sample table

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