TREM2 drives microglia response to amyloid-β via SYK-dependent and -independent pathways.

Wang, Shoutang; Sudan, Raki; Peng, Vincent; Zhou, Yingyue; Du, Siling; Yuede, Carla M; Lei, Tingting; Hou, Jinchao et al. · Cell · 2022

basic_science · Level V

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Abstract

Genetic studies have highlighted microglia as pivotal in orchestrating Alzheimer's disease (AD). Microglia that adhere to Aβ plaques acquire a transcriptional signature, "disease-associated microglia" (DAM), which largely emanates from the TREM2-DAP12 receptor complex that transmits intracellular signals through the protein tyrosine kinase SYK. The human TREM2<sup>R47H</sup> variant associated with high AD risk fails to activate microglia via SYK. We found that SYK-deficient microglia cannot encase Aβ plaques, accelerating brain pathology and behavioral deficits. SYK deficiency impaired the PI3K-AKT-GSK-3β-mTOR pathway, incapacitating anabolic support required for attaining the DAM profile. However, SYK-deficient microglia proliferated and advanced to an Apoe-expressing prodromal stage of DAM; this pathway relied on the adapter DAP10, which also binds TREM2. Thus, microglial responses to Aβ involve non-redundant SYK- and DAP10-pathways. Systemic administration of an antibody against CLEC7A, a receptor that directly activates SYK, rescued microglia activation in mice expressing the TREM2<sup>R47H</sup> allele, unveiling new options for AD immunotherapy.

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