Spinal cord neurone loss and foot placement changes in a rat knock-in model of amyotrophic lateral sclerosis Type 8

Author:

Murage Brenda12,Tan Han1,Mashimo Tomoji3,Jackson Mandy12,Skehel Paul A12

Affiliation:

1. Centre for Discovery Brain Sciences, Edinburgh University , Edinburgh EH8 9XD , UK

2. Euan MacDonald Centre for MND Research, Edinburgh University , Edinburgh EH16 4SB , UK

3. Division of Animal Genetics, Laboratory Animal Research Center, Institute of Medical Science, The University of Tokyo , Tokyo 108-8639 , Japan

Abstract

Abstract Amyotrophic lateral sclerosis is an age-dependent cell type–selective degenerative disease. Genetic studies indicate that amyotrophic lateral sclerosis is part of a spectrum of disorders, ranging from spinal muscular atrophy to frontotemporal dementia that share common pathological mechanisms. Amyotrophic lateral sclerosis Type 8 is a familial disease caused by mis-sense mutations in VAPB. VAPB is localized to the cytoplasmic surface of the endoplasmic reticulum, where it serves as a docking point for cytoplasmic proteins and mediates inter-organelle interactions with the endoplasmic reticulum membrane. A gene knock-in model of amyotrophic lateral sclerosis Type 8 based on the VapBP56S mutation and VapB gene deletion has been generated in rats. These animals display a range of age-dependent phenotypes distinct from those previously reported in mouse models of amyotrophic lateral sclerosis Type 8. A loss of motor neurones in VapBP56S/+ and VapBP56S/P56S animals is indicated by a reduction in the number of large choline acetyl transferase–staining cells in the spinal cord. VapB−/− animals exhibit a relative increase in cytoplasmic TDP-43 levels compared with the nucleus, but no large protein aggregates. Concomitant with these spinal cord pathologies VapBP56S/+, VapBP56S/P56S and VapB−/− animals exhibit age-dependent changes in paw placement and exerted pressures when traversing a CatWalk apparatus, consistent with a somatosensory dysfunction. Extramotor dysfunction is reported in half the cases of motor neurone disease, and this is the first indication of an associated sensory dysfunction in a rodent model of amyotrophic lateral sclerosis. Different rodent models may offer complementary experimental platforms with which to understand the human disease.

Funder

Euan MacDonald Centre for Motor Neurone Disease Research

Motor Neurone Disease Association

MacDonald Foundation

Simons Initiative

Developing Brain

Publisher

Oxford University Press (OUP)

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