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Alzheimers Res Ther
Published

TREM2 Alzheimer's variant R47H causes similar transcriptional dysregulation to knockout, yet only subtle functional phenotypes in human iPSC-derived macrophages.

Authors

Hazel Hall-Roberts, Devika Agarwal, Juliane Obst, Thomas B Smith, Jimena Monzón-Sandoval, Elena Di Daniel, Caleb Webber, William S James, Emma Mead, John B Davis, Sally A Cowley

Abstract

TREM2 is a microglial cell surface receptor, with risk mutations linked to Alzheimer's disease (AD), including R47H. TREM2 signalling via SYK aids phagocytosis, chemotaxis, survival, and changes to microglial activation state. In AD mouse models, knockout (KO) of TREM2 impairs microglial clustering around amyloid and prevents microglial activation. The R47H mutation is proposed to reduce TREM2 ligand binding. We investigated cell phenotypes of the R47H mutant and TREM2 KO in a model of human microglia, and compared their transcriptional signatures, to determine the mechanism by which R47H TREM2 disrupts function.

PMID:33198789 | DOI:10.1186/s13195-020-00709-z

UK DRI Authors

Prof Caleb Webber

Director of Data Science & Group Leader

Combining state-of-the-art stem cell models with bioinformatics techniques to boost our understanding of the biological mechanisms underlying Parkinson’s disease

Prof Caleb Webber