Active Brain & Nervous System Genetics & Molecular Biology

Identification of modifiers of the axonal transport pathway in health and disease

In plain English

AI plain-English summary

Nerve cells in people with motor neuron disease and Alzheimer’s stop moving vital cargo along their internal transport highways long before symptoms appear, and this traffic jam can be cleared in the lab. The problem is that scientists do not understand why neurons die in these incurable diseases, so no effective treatments exist. This team has already shown that restoring normal transport in diseased motor neurons is possible, proving the damage is reversible. Now they want to find the molecular switches that control this transport system in both healthy and diseased cells. If they succeed, the work could identify entirely new drug targets for ALS, Alzheimer’s, and related neurodegenerative disorders. Instead of trying to clear protein clumps or reduce inflammation—the current main approaches—doctors might one day treat the underlying traffic failure itself. This is fundamental science: the immediate output is a map of signalling pathways, not a pill. But similar mechanistic discoveries in cell biology have repeatedly opened unexpected therapeutic doors, from statins to cancer immunotherapies. A clearer picture of how neurons keep their cargo moving could do the same.

View original technical description
The molecular mechanisms causing neuronal death in many neurodegenerative diseases, such as amyotrophic lateral sclerosis (ALS) and Alzheimer’s disease, are poorly understood. The key consequence of our incomplete understanding of disease pathogenesis is that there is a complete dearth of effective symptomatic treatments for these widespread global disorders, prompting the necessity for a step-change in treatment strategies to fight these pathologies. In this view, we are investigating ALS as a disease paradigm to identify new, common targets for pharmacological intervention in these devastating pathologies. In work leading to this proposal, we uncovered alterations in axonal transport of several cytoplasmic organelles at pre-symptomatic stages of ALS pathogenesis, suggesting that these impairments may play a causative role in disease onset and progression. Crucially, we have restored axonal transport to physiological levels at early symptomatic stages of disease, thus demonstrating that these pathological changes are fully reversible. Our program of work aims to identify novel signalling nodes that modulate axonal transport in healthy and ALS motor neurons. This will allow us to test the hypothesis that counteracting axonal transport deficits observed in ALS and other neurodegenerative diseases, represents a novel, effective therapeutic strategy towards treating these currently incurable pathologies.

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Researchers

Giampietro Schiavo (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Dissecting the early dysregulation of neuronal output in human neurons: an opportunity for a functional rescue of ALS/FTD
Beyond the neuromuscular junction: dysfunction of spinal synaptic targets of motoneurons in Amyotrophic Lateral Sclerosis
The role of axonal mRNA translation in Amyotrophic Lateral Sclerosis (resubmission)
Targeting axonal transport regulation by neurotrophic factors to treat peripheral nerve degeneration
Investigating deficits of axonal RNA metabolism and axonal signalling in amyotrophic lateral sclerosis

Original classification

Investigator Award in Science

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