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Article

BIN1 deficiency leads to DNA damage and neuronal insulin resistance through ATM dysregulation

2025-08-21

Abstract excerpt

The major neuronal isoform of the AD risk gene BIN1 is specifically reduced in patients. In the present work, we demonstrate that BIN1 is necessary for intact insulin signaling and its loss leads to cellular-level insulin resistance. Persistently activated mTORC1 feedback inhibits the insulin signaling; meanwhile, ATM-dependent DNA Damage Response decreases the expression of multiple insulin signaling pathway memb...

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Identifiers and source

Literature Corpus work
c8db6dbf-c63f-5ad9-a10b-74831fded09a
DOI
10.1101/2025.08.20.671271
Open publication

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BIN1 deficiency leads to DNA damage and neuronal insulin resistance through ATM dysregulationDOI 10.1101/2025.08.20.671271
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