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Dynamic interplay between H-current and M-current controls motoneuron hyperexcitability in amyotrophic lateral sclerosis

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posted on 2024-11-16, 05:56 authored by Yossi Buskila, Orsolya Kekesi, Alba Bellot-Saez, Wei Lin Seah, Tracey BergTracey Berg, Michael Trpceski, Justin YerburyJustin Yerbury, Lezanne OoiLezanne Ooi
Amyotrophic lateral sclerosis (ALS) is a type of motor neuron disease (MND) in which humans lose motor functions due to progressive loss of motoneurons in the cortex, brainstem, and spinal cord. In patients and in animal models of MND it has been observed that there is a change in the properties of motoneurons, termed neuronal hyperexcitability, which is an exaggerated response of the neurons to a stimulus. Previous studies suggested neuronal excitability is one of the leading causes for neuronal loss, however the factors that instigate excitability in neurons over the course of disease onset and progression are not well understood, as these studies have looked mainly at embryonic or early postnatal stages (pre-symptomatic). As hyperexcitability is not a static phenomenon, the aim of this study was to assess the overall excitability of upper motoneurons during disease progression, specifically focusing on their oscillatory behavior and capabilities to fire repetitively. Our results suggest that increases in the intrinsic excitability of motoneurons are a global phenomenon of aging, however the cellular mechanisms that underlie this hyperexcitability are distinct in SOD1 G93A ALS mice compared with wild-type controls. The ionic mechanism driving increased excitability involves alterations of the expression levels of HCN and KCNQ channel genes leading to a complex dynamic of H-current and M-current activation. Moreover, we show a negative correlation between the disease onset and disease progression, which correlates with a decrease in the expression level of HCN and KCNQ channels. These findings provide a potential explanation for the increased vulnerability of motoneurons to ALS with aging.

Funding

Developing insight into the molecular origins of familial and sporadic frontotemporal dementia and amyotrophic lateral sclerosis

National Health and Medical Research Council

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Neuronal membranes and connections in dementia: targets for intervention

National Health and Medical Research Council

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Citation

Buskila, Y., Kekesi, O., Bellot-Saez, A., Seah, W., Berg, T., Trpceski, M., Yerbury, J. J. & Ooi, L. (2019). Dynamic interplay between H-current and M-current controls motoneuron hyperexcitability in amyotrophic lateral sclerosis. Cell Death and Disease, 10 (4), 310-1-310-13.

Journal title

Cell Death and Disease

Volume

10

Issue

4

Language

English

RIS ID

134928

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