Early amyloid‐induced changes in microglia gene expression in male APP/PS1 mice

Author:

Oshima Takuya1ORCID,Kater Mandy S. J.2ORCID,Huffels Christiaan F. M.3ORCID,Wesseling Evelyn M.1,Middeldorp Jinte34,Hol Elly M.3,Verheijen Mark H. G.2ORCID,Smit August B.2,Boddeke Erik W. G. M.15,Eggen Bart J. L.1ORCID

Affiliation:

1. Department of Biomedical Sciences, Section Molecular Neurobiology University Medical Center Groningen, University of Groningen Groningen The Netherlands

2. Department of Molecular and Cellular Neurobiology, Center for Neurogenomics and Cognitive Research, Amsterdam Neuroscience Vrije Universiteit Amsterdam Amsterdam The Netherlands

3. Department of Translational Neuroscience University Medical Center Utrecht Brain Center, Utrecht University Utrecht The Netherlands

4. Department of Neurobiology & Aging Biomedical Primate Research Centre Rijswijk The Netherlands

5. Department of Cellular and Molecular Medicine, Center for Healthy Aging University of Copenhagen Copenhagen Denmark

Abstract

AbstractAlzheimer's disease (AD) is a progressive neurodegenerative disease and the most common cause of dementia, characterized by deposition of extracellular amyloid‐beta (Aβ) aggregates and intraneuronal hyperphosphorylated Tau. Many AD risk genes, identified in genome‐wide association studies (GWAS), are expressed in microglia, the innate immune cells of the central nervous system. Specific subtypes of microglia emerged in relation to AD pathology, such as disease‐associated microglia (DAMs), which increased in number with age in amyloid mouse models and in human AD cases. However, the initial transcriptional changes in these microglia in response to amyloid are still unknown. Here, to determine early changes in microglia gene expression, hippocampal microglia from male APPswe/PS1dE9 (APP/PS1) mice and wild‐type littermates were isolated and analyzed by RNA sequencing (RNA‐seq). By bulk RNA‐seq, transcriptomic changes were detected in hippocampal microglia from 6‐months‐old APP/PS1 mice. By performing single‐cell RNA‐seq of CD11c‐positive and negative microglia from 6‐months‐old APP/PS1 mice and analysis of the transcriptional trajectory from homeostatic to CD11c‐positive microglia, we identified a set of genes that potentially reflect the initial response of microglia to Aβ.

Funder

ZonMw

Publisher

Wiley

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