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Updated: Jul 4, 2026

Using Live-Cell Imaging to Measure the Effects of Pathological Proteins on Axonal Transport in Primary Hippocampal Neurons
Published on: December 22, 2023
Deregulation of PKN1 activity disrupts neurofilament organisation and axonal transport
Catherine Manser1, Alison Stevenson1, Steven Banner1
1MRC Centre for Neurodegeneration Research, Department of Neuroscience P037, Institute of Psychiatry, King's College, De Crespigny Park, Denmark Hill, London SE58AF, United Kingdom.
Abstract:
Neurofilaments are synthesised in neuronal cell bodies and then transported through axons. Damage to neurofilament transport is seen in amyotrophic lateral sclerosis (ALS). Here, we show that PKN1, a neurofilament head-rod domain kinase is cleaved and activated in SOD1G93A transgenic mice that are a model of ALS. Moreover, we demonstrate that glutamate, a proposed toxic mechanism in ALS leads to caspase cleavage and disruption of PKN1 in neurons. Finally, we demonstrate that a cleaved form of PKN1 but not wild-type PKN1 disrupts neurofilament organisation and axonal transport. Thus, deregulation of PKN1 may contribute to the pathogenic process in ALS.
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