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Triggering Receptor Expressed on Myeloid Cell 2 R47H Exacerbates Immune Response in Alzheimer's Disease Brain
Olena Korvatska1, Kostantin Kiianitsa2, Alexander Ratushny3
1Department of Psychiatry and Behavioral Sciences, University of Washington, Seattle, WA, United States.
Abstract:
The R47H variant in the microglial triggering receptor expressed on myeloid cell 2 (TREM2) receptor is a strong risk factor for Alzheimer's disease (AD). To characterize processes affected by R47H, we performed an integrative network analysis of genes expressed in brains of AD patients with R47H, sporadic AD without the variant, and patients with polycystic lipomembranous osteodysplasia with sclerosing leukoencephalopathy (PLOSL), systemic disease with early-onset dementia caused by loss-of-function mutations in TREM2 or its adaptor TYRO protein tyrosine kinase-binding protein (TYROBP). Although sporadic AD had few perturbed microglial and immune genes, TREM2 R47H AD demonstrated upregulation of interferon type I response and pro-inflammatory cytokines accompanied by induction of NKG2D stress ligands. In contrast, PLOSL had distinct sets of highly perturbed immune and microglial genes that included inflammatory mediators, immune signaling, cell adhesion, and phagocytosis. TREM2 knockout (KO) in THP1, a human myeloid cell line that constitutively expresses the TREM2- TYROBP receptor, inhibited response to the viral RNA mimetic poly(I:C) and phagocytosis of amyloid-beta oligomers; overexpression of ectopic TREM2 restored these functions. Compared with wild-type protein, R47H TREM2 had a higher stimulatory effect on the interferon type I response signature. Our findings point to a role of the TREM2 receptor in the control of the interferon type I response in myeloid cells and provide insight regarding the contribution of R47H TREM2 to AD pathology.
Insights
The TREM2 R47H variant in Alzheimer's disease (AD) alters immune responses, increasing interferon activity. This contrasts with other AD forms and PLOSL, offering new insights into AD pathology.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- The TREM2 R47H variant is a significant Alzheimer's disease (AD) risk factor.
- TREM2 mutations also cause PLOSL, a dementia-related systemic disease.
- Understanding TREM2's role in neuroinflammation is crucial for AD research.
Purpose of the Study:
- To investigate molecular processes affected by the TREM2 R47H variant in AD.
- To compare molecular signatures of R47H AD, sporadic AD, and PLOSL.
- To elucidate TREM2's function in myeloid cell responses.
Main Methods:
- Integrative network analysis of gene expression in human brain tissue.
- TREM2 knockout and overexpression studies in THP1 myeloid cells.
- Functional assays for immune response and phagocytosis.
Main Results:
- R47H AD brains showed increased interferon type I response and pro-inflammatory cytokines.
- PLOSL brains exhibited distinct perturbations in immune and microglial genes.
- R47H TREM2 enhanced interferon response compared to wild-type TREM2 in cell models.
Conclusions:
- TREM2 plays a role in regulating the interferon type I response in myeloid cells.
- The R47H variant may contribute to AD pathogenesis through altered immune signaling.
- Findings provide insights into TREM2-associated neurodegenerative diseases.
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