Amyloid-beta and tau pathologies act synergistically to induce novel disease stage-specific microglia subtypes

Dong Won Kim1, Kevin J Tu2, Alice Wei2

  • 1Solomon H. Snyder Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, MD, 21205, USA.

Molecular Neurodegeneration
|December 19, 2022
PubMed
Abstract

Insights

This study identifies novel microglia subtypes, Early-stage AD-Associated Microglia (EADAM) and Late-stage AD-Associated Microglia (LADAM), crucial for Alzheimer's disease (AD) progression. Siglec genes emerge as potential biomarkers for AD stages and therapeutic targets.

Area of Science:

  • Neuroscience
  • Immunology
  • Genetics

Background:

  • Late-onset Alzheimer's disease (AD) risk alleles often target microglia activity.
  • The precise regulation of microglia subtypes by amyloid-beta (Aβ) and tau pathologies in AD remains unclear.

Purpose of the Study:

  • To investigate how Aβ and tau pathologies influence microglia subtypes during AD progression.
  • To identify novel microglia subtypes and their molecular signatures in AD.

Main Methods:

  • Single-cell RNA-sequencing (scRNA-seq) was used to profile microglia from mouse models with Aβ and tau pathologies.
  • scRNA-seq data from human superior frontal gyrus and entorhinal cortex across Braak stages were analyzed for validation.

Main Results:

  • Two novel microglia subtypes, Early-stage AD-Associated Microglia (EADAM) and Late-stage AD-Associated Microglia (LADAM), were identified in a disease-stage-specific manner.
  • EADAM and LADAM gene expression patterns in mice mirrored those found in human AD brains at corresponding Braak stages.
  • Siglec genes, including Siglec-10, showed selective expression in EADAM/LADAM and were elevated in an AD-stage-dependent manner.

Conclusions:

  • Both Aβ and tau pathologies are necessary for the stage-specific induction of EADAM and LADAM.
  • Siglec genes represent potential biomarkers for AD progression and therapeutic targets.