Spinal muscular atrophy (SMA) is a devastating neuromuscular disorder caused by mutations in the Survival Motor Neuron 1 (SMN1) gene, leading to decreased SMN levels and motor neuron dysfunction. SMN-restoring therapies offer clinical benefit, but the downstream molecular consequences of SMN reduction remain incompletely understood. Here, we demonstrate that SMN deficiency results in downregulation of KIF5A in human neurons and in a mouse model of SMA. We provide evidence that reduced SMN levels impair axon regeneration, which is rescued by KIF5A overexpression and that the RNA-binding protein SMN functions to stabilize KIF5A mRNA. These findings provide evidence of a molecular link between SMA and ALS pathophysiology, highlighting KIF5A as a new SMN target. Our findings suggest SMN-independent interventions targeting KIF5A could represent a complementary therapeutic approach for SMA and other motor neuron diseases.
KIF5A downregulation in spinal muscular atrophy links axonal regeneration defects with ALS.
脊髓性肌萎缩症中 KIF5A 的下调将轴突再生缺陷与 ALS 联系起来
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作者:Akiyama Tetsuya, Zeng Yi, Guo Caiwei, Gautier Olivia, Koepke Lauren, Bombosch Juliane, Sianto Odilia, Ross Jay P, Hoang Phuong Thi, Zhao Luke Yuchen, Spencer Cole, Monje Michelle, Day John W, Gitler Aaron D
| 期刊: | bioRxiv | 影响因子: | 0.000 |
| 时间: | 2025 | 起止号: | 2025 Jul 13 |
| doi: | 10.1101/2025.07.11.664426 | 研究方向: | 神经科学 |
| 疾病类型: | 肌萎缩症 | ||
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