Mutations in FUS and TARDBP cause amyotrophic lateral sclerosis (ALS), but the precise mechanisms of selective motor neuron degeneration remain unresolved. To address if pathomechanisms are shared across mutations and related to either gain- or loss-of-function, we performed single-cell RNA sequencing across isogenic induced pluripotent stem cell-derived neuron types, harbouring FUSÂ P525L, FUSÂ R495X, TARDBPÂ M337V mutations or FUS knockout. Transcriptional changes were far more pronounced in motor neurons than interneurons. About 20% of uniquely dysregulated motor neuron transcripts were shared across FUS mutations, half from gain-of-function. Most indicated mitochondrial impairments, with attenuated pathways shared with mutant TARDBP M337V as well as C9orf72-ALS patient motor neurons. Mitochondrial motility was impaired in ALS motor axons, even with nuclear localized FUS mutants, demonstrating shared toxic gain-of-function mechanisms across FUS- and TARDBP-ALS, uncoupled from protein mislocalization. These early mitochondrial dysfunctions unique to motor neurons may affect survival and represent therapeutic targets in ALS.
Single-cell RNA-sequencing reveals early mitochondrial dysfunction unique to motor neurons shared across FUS- and TARDBP-ALS.
单细胞 RNA 测序揭示了 FUS-ALS 和 TARDBP-ALS 患者运动神经元中特有的早期线粒体功能障碍
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作者:Schweingruber Christoph, Nijssen Jik, Mechtersheimer Jonas, Reber Stefan, LebÅuf Mélanie, O'Brien Niamh L, Mei Irene, Hedges Erin, Keuper Michaela, Benitez Julio Aguila, Radoi Vlad, Jastroch Martin, Ruepp Marc-David, Hedlund Eva
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 May 19; 16(1):4633 |
| doi: | 10.1038/s41467-025-59679-1 | 研究方向: | 神经科学、细胞生物学 |
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