Selection and structural characterization of anti-TREM2 scFvs that reduce levels of shed ectodomain

Mutations in TREM2, a receptor expressed by microglia in the brain, are associated with an increased risk of neurodegeneration, including Alzheimer's disease. Numerous studies support a role for TREM2 in sensing damaging stimuli and triggering signaling cascades necessary for neuroprotection. D...

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Detaylı Bibliyografya
Asıl Yazarlar: Szykowska, A, Chen, Y, Smith, TB, Preger, C, Yang, J, Qian, D, Mukhopadhyay, SM, Wigren, E, Neame, SJ, Gräslund, S, Persson, H, Atkinson, PJ, Di Daniel, E, Mead, E, Wang, J, Davis, JB, Burgess-Brown, NA, Bullock, AN
Materyal Türü: Journal article
Dil:English
Baskı/Yayın Bilgisi: Cell Press 2021
Diğer Bilgiler
Özet:Mutations in TREM2, a receptor expressed by microglia in the brain, are associated with an increased risk of neurodegeneration, including Alzheimer's disease. Numerous studies support a role for TREM2 in sensing damaging stimuli and triggering signaling cascades necessary for neuroprotection. Despite its significant role, ligands and regulators of TREM2 activation, and the mechanisms governing TREM2-dependent responses and its cleavage from the membrane, remain poorly characterized. Here, we present phage display generated antibody single-chain variable fragments (scFvs) to human TREM2 immunoglobulin-like domain. Co-crystal structures revealed the binding of two scFvs to an epitope on the TREM2 domain distal to the putative ligand-binding site. Enhanced functional activity was observed for oligomeric scFv species, which inhibited the production of soluble TREM2 in a HEK293 cell model. We hope that detailed characterization of their epitopes and properties will facilitate the use of these renewable binders as structural and functional biology tools for TREM2 research.