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Wild-type sTREM2 blocks Aβ aggregation and neurotoxicity, but the Alzheimer's R47H mutant increases Aβ aggregation
Anna Vilalta1, Ye Zhou2, Jean Sevalle2
1Department of Biochemistry, University of Cambridge, Cambridge, United Kingdom.
Abstract:
TREM2 is a pattern recognition receptor, expressed on microglia and myeloid cells, detecting lipids and Aβ and inducing an innate immune response. Missense mutations (e.g., R47H) of TREM2 increase risk of Alzheimer's disease (AD). The soluble ectodomain of wild-type TREM2 (sTREM2) has been shown to protect against AD in vivo, but the underlying mechanisms are unclear. We show that Aβ oligomers bind to cellular TREM2, inducing shedding of the sTREM2 domain. Wild-type sTREM2 bound to Aβ oligomers (measured by single-molecule imaging, dot blots, and Bio-Layer Interferometry) inhibited Aβ oligomerization and disaggregated preformed Aβ oligomers and protofibrils (measured by transmission electron microscopy, dot blots, and size-exclusion chromatography). Wild-type sTREM2 also inhibited Aβ fibrillization (measured by imaging and thioflavin T fluorescence) and blocked Aβ-induced neurotoxicity (measured by permeabilization of artificial membranes and by loss of neurons in primary neuronal-glial cocultures). In contrast, the R47H AD-risk variant of sTREM2 is less able to bind and disaggregate oligomeric Aβ but rather promotes Aβ protofibril formation and neurotoxicity. Thus, in addition to inducing an immune response, wild-type TREM2 may protect against amyloid pathology by the Aβ-induced release of sTREM2, which blocks Aβ aggregation and neurotoxicity. In contrast, R47H sTREM2 promotes Aβ aggregation into protofibril that may be toxic to neurons. These findings may explain how wild-type sTREM2 apparently protects against AD in vivo and why a single copy of the R47H variant gene is associated with increased AD risk.
Insights
Soluble TREM2 (sTREM2) released upon Aβ binding inhibits amyloid aggregation and neurotoxicity, protecting against Alzheimer's disease (AD). The R47H AD-risk variant of sTREM2, however, promotes Aβ aggregation and toxicity.
Area of Science:
- Neuroscience
- Immunology
- Biochemistry
Background:
- TREM2 is a receptor on microglia and myeloid cells involved in innate immunity.
- TREM2 mutations, like R47H, are linked to increased Alzheimer's disease (AD) risk.
- The protective mechanisms of soluble TREM2 (sTREM2) in AD are not fully understood.
Purpose of the Study:
- To investigate the interaction between Aβ oligomers and TREM2.
- To elucidate the role of wild-type and R47H variant sTREM2 in Aβ aggregation and neurotoxicity.
- To understand the protective mechanisms of sTREM2 against AD pathology.
Main Methods:
- Single-molecule imaging, dot blots, Bio-Layer Interferometry to assess Aβ-sTREM2 binding.
- Transmission electron microscopy, size-exclusion chromatography to analyze Aβ aggregation.
- Thioflavin T fluorescence, artificial membrane permeabilization, and primary neuronal-glial cocultures to evaluate neurotoxicity.
Main Results:
- Aβ oligomers induce shedding of wild-type sTREM2.
- Wild-type sTREM2 binds Aβ oligomers, inhibiting aggregation and disaggregating existing oligomers/protofibrils.
- Wild-type sTREM2 blocks Aβ-induced neurotoxicity, while R47H sTREM2 promotes Aβ aggregation and neurotoxicity.
Conclusions:
- Aβ-induced release of wild-type sTREM2 is a protective mechanism against amyloid pathology and neurotoxicity in AD.
- The R47H AD-risk variant of sTREM2 exhibits impaired Aβ binding and aggregation inhibition, promoting neurotoxicity.
- These findings explain the in vivo protective effects of wild-type sTREM2 and the increased AD risk associated with the R47H variant.
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