The tau isoform 1N4R confers vulnerability of MAPT knockout human iPSC-derived neurons to amyloid beta and phosphorylated tau-induced neuronal dysfunction
| Author | Buchholz, Sarah; Kabbani, Mohamed Aghyad Al; Bell-Simons, Michael; Kluge, Lena; Cagmak, Cagla; Klimek, Jennifer; Haag, Natja; Carvalho, Lukas Iohan da Cruz; Coulon, Audrey; Costa, Marcos Romualdo; Kilinc, Devrim; Zempel, Hans | |
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| Publisher | Alzheimer’s Dement | |
| Date | 2025 | |
| Keywords | Alzheimer's disease Amyloid beta Axon initial segment Human induced pluripotent stem cells Induced neurons Isoforms Knockout Neuronal activity Tau Tauopathy | |
| Citation | ||
| Abstract | Introduction: Human tau protein, composed of six brain-specific isoforms, is a major driver of Alzheimer's disease (AD). The role of its isoforms however remains unclear and human AD models are scarce. Methods: We generated human MAPT- (tau-) knockout (KO) induced pluripotent stem cells (iPSC) using CRISPR/Cas9, differentiated these into glutamatergic neurons, and assessed isoform-specific functions of tau in these neurons. We used omic- approaches, live-cell imaging, subcompartmental analysis, and lentivirus-based reintroduction of specific tau isoforms to investigate isoform-mediated neuronal dysfunction in an AD model. Results: Tau KO human iPSC-derived neurons showed decreased neurite outgrowth and axon initial segment length and, notably, resisted amyloid beta oligomer (AβO)-induced neuronal activity reduction. Introducing the 1N4R-tau isoform, but not other isoforms, confers AβO vulnerability and increases KxGS phosphorylation of tau, without altering neuronal activity or microtubule modifications. Discussion: While tau KO impacts neuronal development and activity, tau-KO also confers resistance against AβO insult. 1N4R-tau likely mediates AβO-induced and phosphorylated tau toxicity, representing a novel prime therapeutic target for AD | |
| URI | https://repositorio.ufrn.br/handle/123456789/67694 | |
| Collections | ICe - Artigos publicados em periódicos |
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