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Updated: Feb 12, 2026

Full- versus Sub-Regional Quantification of Amyloid-Beta Load on Mouse Brain Sections
Published on: May 19, 2022
Amyloid-beta modulates microglial responses by binding to the triggering receptor expressed on myeloid cells 2
Li Zhong1, Zongqi Wang1, Daxin Wang1
1Fujian Provincial Key Laboratory of Neurodegenerative Disease and Aging Research, Institute of Neuroscience, Medical College, Xiamen University, Xiamen, 361102, China.
Background:
TREM2 is an innate immune receptor specifically expressed in microglia. Coding variations in TREM2 have been reported to increase the risk for Alzheimer's disease (AD) and other neurodegenerative diseases. While multiple studies support a role for TREM2 in microglial recruitment to amyloid plaques, the chemoattractant factor modulating TREM2-dependent microglial responses has not been defined.
Methods:
Potential binding of oligomeric amyloid-β 1-42 (oAβ1-42) to TREM2 was tested by complementary approaches including solid phase binding, surface plasmon resonance and immunoprecipitation assays. The ability of oAβ1-42 to activate TREM2 signaling pathways was examined by analyzing the phosphorylation of Syk and Akt in primary microglia as well as TREM2-mediated signaling in a reporter cell system. Lastly, the functional outcome of oAβ1-42-TREM2 interaction was tested by examining impacts on microglial migration in vitro and clustering around oAβ1-42-bearing brain areas in vivo.
Results:
We found that oAβ1-42 bound to TREM2 with high affinity and activated TREM2-dependent signaling pathway. Neither monomeric nor scrambled Aβ bound to TREM2 supporting a specific interaction between oAβ and TREM2. The disease-associated mutations of TREM2 reduced its binding affinity to oAβ1-42. Furthermore, we identified several positively charged amino acids within residues 31-91 of TREM2 that were crucial for its interaction with oAβ1-42. Importantly, oAβ1-42 promoted microglial migration in vitro and clustering in vivo in a TREM2-dependent manner.
Conclusions:
Our data establish a critical link between oAβ1-42, a major pathological component of AD, and TREM2, a strong genetic risk factor for AD expressed in microglia, and suggest that such interaction contributes to the pathogenic events in AD by modulating microglial responses.
Insights
Oligomeric amyloid-beta 1-42 binds TREM2, activating microglial responses crucial for Alzheimer's disease pathogenesis. This interaction influences microglial migration and clustering, highlighting TREM2's role in AD progression.
Area of Science:
- Neuroscience
- Immunology
- Molecular Biology
Background:
- TREM2 is an innate immune receptor in microglia, with mutations linked to neurodegenerative diseases like Alzheimer's disease (AD).
- While TREM2's role in microglial recruitment to amyloid plaques is known, the specific chemoattractant factor remains undefined.
Purpose of the Study:
- To investigate the binding of oligomeric amyloid-beta 1-42 (oAβ₁-42) to TREM2.
- To determine if oAβ₁-42 activates TREM2 signaling pathways.
- To examine the functional consequences of the oAβ₁-42-TREM2 interaction on microglial behavior.
Main Methods:
- Solid phase binding, surface plasmon resonance, and immunoprecipitation assays were used to test oAβ₁-42 binding to TREM2.
- TREM2 signaling activation was assessed by analyzing Syk and Akt phosphorylation and using a reporter cell system.
- Microglial migration in vitro and in vivo clustering around oAβ₁-42 were evaluated.
Main Results:
- High-affinity binding of oAβ₁-42 to TREM2 was observed, with specific interaction confirmed by lack of binding of monomeric or scrambled Aβ.
- Disease-associated TREM2 mutations reduced binding affinity to oAβ₁-42, with positively charged amino acids in residues 31-91 being crucial for interaction.
- oAβ₁-42 significantly promoted microglial migration and in vivo clustering in a TREM2-dependent manner.
Conclusions:
- A critical link between oAβ₁-42 and TREM2, a genetic risk factor for AD, was established.
- The interaction between oAβ₁-42 and TREM2 modulates microglial responses, contributing to pathogenic events in Alzheimer's disease.
- These findings provide insights into the molecular mechanisms underlying TREM2's role in AD pathogenesis.
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