Motor neuron hyperexcitability is a broadly observed yet poorly understood feature of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). Nuclear depletion and cytoplasmic aggregation of the RNA splicing protein TAR DNA-binding protein 43 (TDP-43) are observed in most ALS and FTD patients. Here we show that TDP-43 dysfunction causes mis-splicing of KCNQ2, which encodes a voltage-gated potassium channel (K(v)7.2) that regulates neuronal excitability. Using iPSC-derived neurons and postmortem ALS/FTD brain and spinal cord tissue we find widespread, disease-specific and TDP-43-specific skipping of an exon encoding the KCNQ2 pore domain. The mis-spliced mRNA escapes degradation and is translated into a nonfunctional protein with severely reduced ion conductance that aggregates in the endoplasmic reticulum and causes intrinsic hyperexcitability in ALS neuronal models. This event, which correlates with higher phosphorylated TDP-43 levels and earlier age of disease onset in patients, can be rescued by splice-modulating antisense oligonucleotides that dampen hyperexcitability in induced pluripotent stem cell cortical neurons and spinal motor neurons with TDP-43 depletion. Our work reveals that nuclear TDP-43 maintains the fidelity of KCNQ2 expression and function and provides a mechanistic link between established excitability disruption in ALS/FTD patients and TDP-43 dysfunction.
TDP-43-dependent mis-splicing of KCNQ2 triggers intrinsic neuronal hyperexcitability in ALS/FTD.
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作者:Joseph Brian J, Marshall Kelly A, Harley Peter, Mann Jacob R, Alessandrini Francesco, Vanoye Carlos G, Chi Wanhao, Prudencio Mercedes, Simkin Dina, Kao Tzu-Ting, Desai Reshma R, Keuss Matthew J, Barattucci Simone, Zanovello Matteo, Mehta Puja R, DeKeyser Jean-Marc, Limone Francesco, Lee Jonathan, Brown Anna-Leigh, Leyton-Jaimes Marcel F, Nash Leslie A, Juan Irune Guerra San, Aronica Eleonora, Wainger Brian J, Shah Mala, Goswami Anand, Shneider Neil A, Dickson Dennis W, Burrone Juan, Zhang Chaolin, Wichterle Hynek, Petrucelli Leonard, Watts Jonathan K, George Alfred L Jr, Fratta Pietro, Eggan Kevin, Kiskinis Evangelos
| 期刊: | Nature Neuroscience | 影响因子: | 20.000 |
| 时间: | 2025 | 起止号: | 2025 Dec;28(12):2476-2492 |
| doi: | 10.1038/s41593-025-02096-w | ||
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