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◆ bioRxiv : the preprint server for biology2026-09-18· neuroscience

Restoring multiple TDP-43 cryptic targets, but not solely Unc13a , rescues motor neuron disease.

Aswathy Peethambaran Mallika, Meghraj Singh Baghel, Opal Sitzman, Jessica G Yu, Tianyu Cao, Shruti Renganathan, Irika R Sinha, Tatiana Melnikova, Jonathan P Ling, Philip C Wong

原始摘要(英文原文)· Original abstract
Dysfunction of TAR DNA-binding protein 43kDa (TDP-43) underlies amyotrophic lateral sclerosis (ALS), a neurodegenerative disorder with limited therapeutic options. While current therapeutic approaches are designed to individually target unique cryptic exons of TDP-43 such as UNC13A , the sufficiency of such a strategy to mitigate motor neuron disease remains unclear. Using a mouse model lacking TDP-43 in spinal motor neurons which mimics early stages of ALS, we show that the exclusion of Unc13a cryptic exon fails to mitigate motor neuron disease. In contrast, the restoration of multiple TDP-43 cryptic targets, including Unc13a , attenuated motor neuron loss, and rescued motor neuron disease. Additionally, compared to brain neurons, spinal motor neurons accumulate markedly lower amounts of Unc13a cryptic exons in mice and humans, suggesting that the contribution of this TDP-43 cryptic target to spinal motor neuron loss may be limited. Together, these results strongly support ALS therapeutic strategies designed to simultaneously restore multiple TDP-43 cryptic targets to attenuate spinal motor neuron loss.
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Restoring multiple TDP-43 cryptic targets, but not solely Unc13a , rescues motor neuron disease. — 科研速览 Science Skim