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Merck

Genome-wide CRISPR screen identifies protein pathways modulating tau protein levels in neurons.

Communications biology (2021-06-16)
Carlos G Sanchez, Christopher M Acker, Audrey Gray, Malini Varadarajan, Cheng Song, Nadire R Cochran, Steven Paula, Alicia Lindeman, Shaojian An, Gregory McAllister, John Alford, John Reece-Hoyes, Carsten Russ, Lucas Craig, Ketthsy Capre, Christian Doherty, Gregory R Hoffman, Sarah J Luchansky, Manuela Polydoro, Ricardo Dolmetsch, Fiona Elwood
RESUMEN

Aggregates of hyperphosphorylated tau protein are a pathological hallmark of more than 20 distinct neurodegenerative diseases, including Alzheimer's disease, progressive supranuclear palsy, and frontotemporal dementia. While the exact mechanism of tau aggregation is unknown, the accumulation of aggregates correlates with disease progression. Here we report a genome-wide CRISPR screen to identify modulators of endogenous tau protein for the first time. Primary screens performed in SH-SY5Y cells, identified positive and negative regulators of tau protein levels. Hit validation of the top 43 candidate genes was performed using Ngn2-induced human cortical excitatory neurons. Using this approach, genes and pathways involved in modulation of endogenous tau levels were identified, including chromatin modifying enzymes, neddylation and ubiquitin pathway members, and components of the mTOR pathway. TSC1, a critical component of the mTOR pathway, was further validated in vivo, demonstrating the relevance of this screening strategy. These findings may have implications for treating neurodegenerative diseases in the future.

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Sigma-Aldrich
ANTI-FLAG® M2 monoclonal antibody produced in mouse, 1 mg/mL, clone M2, affinity isolated antibody, buffered aqueous solution (50% glycerol, 10 mM sodium phosphate, and 150 mM NaCl, pH 7.4)
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Anti-β-actina monoclonal antibody produced in mouse, clone AC-74, ascites fluid