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[Preprint]. 2024 Jun 29:2024.06.25.600720. [Version 1] doi: 10.1101/2024.06.25.600720

Single-nucleus multiomics reveals the disrupted regulatory programs in three brain regions of sporadic early-onset Alzheimer’s disease

Andi Liu, Citu Citu, Nitesh Enduru, Xian Chen, Astrid M Manuel, Tirthankar Sinha, Damian Gorski, Brisa S Fernandes, Meifang Yu, Paul E Schulz, Lukas M Simon, Claudio Soto, Zhongming Zhao
PMCID: PMC11230393  PMID: 38979371

Abstract

Sporadic early-onset Alzheimer’s disease (sEOAD) represents a significant but less-studied subtype of Alzheimer’s disease (AD). Here, we generated a single-nucleus multiome atlas derived from the postmortem prefrontal cortex, entorhinal cortex, and hippocampus of nine individuals with or without sEOAD. Comprehensive analyses were conducted to delineate cell type-specific transcriptomic changes and linked candidate cis- regulatory elements (cCREs) across brain regions. We prioritized seven conservative transcription factors in glial cells in multiple brain regions, including RFX4 in astrocytes and IKZF1 in microglia, which are implicated in regulating sEOAD-associated genes. Moreover, we identified the top 25 altered intercellular signaling between glial cells and neurons, highlighting their regulatory potential on gene expression in receiver cells. We reported 38 cCREs linked to sEOAD-associated genes overlapped with late-onset AD risk loci, and sEOAD cCREs enriched in neuropsychiatric disorder risk loci. This atlas helps dissect transcriptional and chromatin dynamics in sEOAD, providing a key resource for AD research.

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