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The incidence of Alzheimer’s disease (AD), the leading cause of dementia, increases rapidly with age, but why age constitutes the main risk factor is still poorly understood. Brain ageing affects oligodendrocytes and the structural integrity of myelin sheaths1, the latter of which is associated with secondary neuroinflammation2,3. As oligodendrocytes support axonal energy metabolism and neuronal health4,5,6,7, we hypothesized that loss of myelin integrity could be an upstream risk factor for neuronal amyloid-β (Aβ) deposition, the central neuropathological hallmark of AD. Here we identify genetic pathways of myelin dysfunction and demyelinating injuries as potent drivers of amyloid deposition in mouse models of AD. Mechanistically, myelin dysfunction causes the accumulation of the Aβ-producing machinery within axonal swellings and increases the cleavage of cortical amyloid precursor protein. Suprisingly, AD mice with dysfunctional myelin lack plaque-corralling microglia despite an overall increase in their numbers. Bulk and single-cell transcriptomics of AD mouse models with myelin defects show that there is a concomitant induction of highly similar but distinct disease-associated microglia signatures specific to myelin damage and amyloid plaques, respectively. Despite successful induction, amyloid disease-associated microglia (DAM) that usually clear amyloid plaques are apparently distracted to nearby myelin damage. Our data suggest a working model whereby age-dependent structural defects of myelin promote Aβ plaque formation directly and indirectly and are therefore an upstream AD risk factor. Improving oligodendrocyte health and myelin integrity could be a promising target to delay development and slow progression of AD.
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Created: 10th Aug 2026 at 12:00
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Projects: TRR 274: Checkpoints of Central Nervous System Recovery
Institutions: Universitätsmedizin Göttingen
Projects: CRC1002: Modulatory Units in Heart Failure, TRR 274: Checkpoints of Central Nervous System Recovery, SFB 1190: Compartmental Gates and Contact Sites in Cells
Web page: Not specified
https://rdp.sfb274.de/ (Research Data Platform) https://gepris.dfg.de/gepris/projekt/408885537 (DFG Gepris entry) The central nervous system (CNS) is a terminally differentiated tissue, where any insult carries a heightened risk - yet the tissue response to these insults is variable and can range from irreversible destruction to almost complete recovery. The rules that instruct these divergent outcomes are still unknown. The aim of this CRC is therefore to understand the biology of the multicellular ...
Programme: Sonderforschungsbereiche/Collaborative Research Centers
Public web page: https://www.sfb274.de/
Erythropoietin (EPO) is a cytokine that serves, independent of hematopoiesis, signalling functions within the brain, where EPO and its receptor are upregulated upon injury. The underlying mechanisms, however, have remained obscure. We aim to understand the roles of EPO/EPOR signalling as checkpoints of brain homeostasis and thereby specifically predict effects of recombinant EPO as a neuroprotective drug. To this end, we will explore the induction/expression of EPO and EPOR at the single cell ...
Submitter: Camilla Giudici
Studies: Myelin dysfunction drives amyloid-β deposition in models of Alzheimer’s ..., Oligodendrocytes produce amyloid-β and contribute to plaque formation al...
Assays: Expression profiling: Bulk RNA-seq (mouse), Expression profiling: SuperSeries (mouse), Expression profiling: scRNA-seq (mouse), Expression profiling: snRNA-seq (human), Expression profiling: snRNA-seq (human), Expression profiling: snRNA-seq (mouse), Expression profiling: snRNA-seq (mouse)
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This SuperSeries is composed of the SubSeries listed below.
Submitter: Camilla Giudici
Assay type: Transcriptomics
Technology type: Sequencing
Investigation: C01 - EPO/EPOR signalling in the recovery from ...
Organisms: Mouse
SOPs: No SOPs
Data files: Ageing-associated myelin dysfunction drives amy...
Snapshots: No snapshots
Submitter: Camilla Giudici
Assay type: Transcriptomics
Technology type: Sequencing
Investigation: C01 - EPO/EPOR signalling in the recovery from ...
Organisms: Mouse
SOPs: No SOPs
Data files: Transcriptome profiling of mouse brain microgli...
Snapshots: No snapshots
Submitter: Camilla Giudici
Assay type: Transcriptomics
Technology type: Sequencing
Investigation: C01 - EPO/EPOR signalling in the recovery from ...
Organisms: Mouse
SOPs: No SOPs
Data files: Single-nuclei transcriptome sequencing of 5xFAD..., Single-nuclei transcriptome sequencing of mouse...
Snapshots: No snapshots
Cortex and corpus callosum were dissected from every two animals (3-month-old) and pooled into one sample for single-nuclei RNA sequencing using 10x genomics Chromium 3’ assay. Each genotype has 2 replicates (in total n=4 animals).
Creators: None
Submitter: Camilla Giudici
Investigations: C01 - EPO/EPOR signalling in the recovery from ...
Brain hemispheres were dissected from 6-month-old animals and subjected to single-nuclei RNA sequencing using 10x genomics Chromium 3’ assay. In total 4 genotypes were included for the experiment (WT, Cnp-/-, 5xFAD, Cnp-/-x5xFAD), each genotype has n=2 replicates.
Creators: None
Submitter: Camilla Giudici
Investigations: C01 - EPO/EPOR signalling in the recovery from ...
Microglia cells from 6-month-old mouse brain hemispheres were isolated using the MACS sorting system and subjected to 50 bp single-end mRNA sequencing. Each genotype has n=4 replicates, in total 4 genotypes were included for experiment (WT, Cnp-/-, 5xFAD, Cnp-/-x5xFAD).
Creators: None
Submitter: Camilla Giudici
Creators: None
Submitter: Camilla Giudici
Abstract (Expand)
Authors: Constanze Depp, Ting Sun, Andrew Octavian Sasmita, Lena Spieth, Stefan A. Berghoff, Taisiia Nazarenko, Katharina Overhoff, Agnes A. Steixner-Kumar, Swati Subramanian, Sahab Arinrad, Torben Ruhwedel, Wiebke Möbius, Sandra Göbbels, Gesine Saher, Hauke B. Werner, Alkmini Damkou, Silvia Zampar, Oliver Wirths, Maik Thalmann, Mikael Simons, Takashi Saito, Takaomi Saido, Dilja Krueger-Burg, Riki Kawaguchi, Michael Willem, Christian Haass, Daniel Geschwind, Hannelore Ehrenreich, Ruth Stassart, Klaus-Armin Nave
Date Published: 31st May 2023
Publication Type: Journal Article
DOI: 10.1038/s41586-023-06120-6
Citation: Nature 618(7964):349-357.
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https://orcid.org/0000-0002-3794-7295