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April 23, 2026Annual Review of Genomics and Human Genetics2 citations

Cryptic Splicing in ALS: From Driving Disease Progression to Unlocking Novel Therapeutics

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SESara Emad El-AgamyFMFrancesca MattediPFPietro Fratta

Key Points

  • The study investigates the role of TDP-43 mislocalization and cryptic splicing in ALS progression and potential therapies.
  • Examined the effects of TDP-43 nuclear clearance on neuronal health and splicing events.
  • Analyzed pathways involved in axonal homeostasis and synaptic transmission.
  • TDP-43 mislocalization impairs cellular proteostasis, leading to neuronal dysfunction.
  • Cryptic splicing events are linked to key genes in neuronal pathways, suggesting further exploration for treatment.

Abstract

TDP-43 is an RNA-binding protein that regulates multiple aspects of RNA processing, and its mislocalization from the nucleus to the cytoplasm is a defining feature of amyotrophic lateral sclerosis (ALS). While both loss- and gain-of-function mechanisms contribute to disease, the discovery of cryptic splicing has shed light on the downstream consequences of TDP-43 nuclear clearance for neuronal health. Here, we highlight how loss of nuclear TDP-43 can drive a cascade of events that lead to the impairment of cellular proteostasis and result in a positive feedback loop that perpetuates neuronal dysfunction. This sustains the appearance of cryptic splicing events in genes that are involved in key pathways for the maintenance of axonal homeostasis and synaptic transmission. In contrast to their detrimental effects on neuronal health, cryptic splicing mechanisms may be harnessed to develop novel therapeutic strategies, unprecedentedly expanding the availability of therapeutic avenues for TDP-43 proteinopathies.

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Cite This Study

El-Agamy et al. (2026) studied this question.

synapsesocial.com/papers/69e9bb6285696592c86ed0f8https://doi.org/10.1146/annurev-genom-022024-011307
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