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A single-cell atlas of entorhinal cortex from individuals with Alzheimer's disease reveals cell-type-specific gene expression regulation.

Updated September 22, 2023

There is currently little information available about how individual cell types contribute to Alzheimer's disease. Here we applied single-nucleus RNA sequencing to entorhinal cortex samples from control and Alzheimer's disease brains (nā€‰=ā€‰6 per group), yielding a total of 13,214 high-quality nuclei. We detail cell-type-specific gene expression patterns, unveiling how transcriptional changes in specific cell subpopulations are associated with Alzheimer's disease. We report that the Alzheimer's disease risk gene APOE is specifically repressed in Alzheimer's disease oligodendrocyte progenitor cells and astrocyte subpopulations and upregulated in an Alzheimer's disease-specific microglial subopulation. Integrating transcription factor regulatory modules with Alzheimer's disease risk loci revealed drivers of cell-type-specific state transitions towards Alzheimer's disease. For example, transcription factor EB, a master regulator of lysosomal function, regulates multiple disease genes in a specific Alzheimer's disease astrocyte subpopulation. These results provide insights into the coordinated control of Alzheimer's disease risk genes and their cell-type-specific contribution to disease susceptibility. These results are available at http://adsn.ddnetbio.com.

Owen J L RackhamProgram in Cardiovascular and Metabolic Disorders, Duke-National University of Singapore Medical School, Singapore, Singaporeowen.rackham@duke-nus.edu.sg
Enrico PetrettoProgram in Cardiovascular and Metabolic Disorders, Duke-National University of Singapore Medical School, Singapore, Singaporeenrico.petretto@duke-nus.edu.sg
Jose M PoloDepartment of Anatomy and Developmental Biology, Monash University, Clayton, Victoria, Australia.jose.polo@monash.edu
Alexandra Grubman1
Gabriel Chew2
John F Ouyang2
Guizhi Sun1
Xin Yi Choo1
Catriona McLean3
Rebecca K Simmons4
Sam Buckberry4
Dulce B Vargas-Landin4
Daniel Poppe4
Jahnvi Pflueger4
Ryan Lister4
Owen J L Rackham5
Enrico Petretto5
Jose M Polo1
1Department of Anatomy and Developmental Biology, Monash University, Clayton, Victoria, Australia.
2Program in Cardiovascular and Metabolic Disorders, Duke-National University of Singapore Medical School, Singapore, Singapore.
3Victorian Brain Bank, Florey Institute of Neurosciences, Parkville, Victoria, Australia.
4ARC Center of Excellence in Plant Energy Biology, The University of Western Australia, Perth, Western Australia, Australia.
5Program in Cardiovascular and Metabolic Disorders, Duke-National University of Singapore Medical School, Singapore, Singapore
Rachel Schwartz

To reference this project, please use the following link:

https://explore.data.humancellatlas.org/projects/dcc28fb3-7bab-48ce-bc4b-684c00e133ce
None
INSDC Project Accessions:GEO Series Accessions:INSDC Study Accessions:

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Analysis Portals

None

Project Label

entorhinalCortexAlzheimers

Species

Homo sapiens

Sample Type

specimens

Anatomical Entity

brain

Organ Part

entorhinal cortex

Selected Cell Types

Unspecified

Disease Status (Specimen)

2 disease statuses

Disease Status (Donor)

2 disease statuses

Development Stage

human adult stage

Library Construction Method

10x 3' v2

Nucleic Acid Source

single nucleus

Paired End

false

Analysis Protocol

analysis_protocol_1, analysis_protocol_2

File Format

3 file formats

Cell Count Estimate

13.2k

Donor Count

8
csv.gz2 file(s)fastq.gz96 file(s)xlsx1 file(s)