Abstract

Findings from studies using animal models expressing amyotrophic lateral sclerosis (ALS) mutations in RNA-binding proteins, such as Transactive Response DNA-binding protein-43 (TDP-43), indicate that this protein, which is involved in multiple functions, including transcriptional regulation and pre-mRNA splicing, represents a key candidate in ALS development. This study focuses on characterizing, in a Drosophila genetic model of ALS (TDP-43), the effects of Mucuna pruriens (Mpe) and Withania somnifera (Wse). Electrophysiological and behavioural data in TDP-43 mutant flies revealed anomalous locomotion (i.e. impaired climbing with unexpected hyperactivity) and sleep dysregulation. These features, in agreement with previous findings with a different ALS model, were at least partially, rescued by treatment with Mpe and Wse. In addition, electrophysiological recordings from dorsal longitudinal muscle fibers and behavioral observations of TDP-43 flies exposed to the volatile anaesthetics, diethyl ether or chloroform, showed paradoxical responses, which were normalized upon Mpe or Wse treatment. Hence, given the involvement of some potassium channels in the effects of anaesthetics, our results also hint toward a possible dysregulation of some potassium channels in the ALS-TDP-43 Drosophila model, that might shed new light on future therapeutic strategies pertaining to ALS.

Highlights

  • Alterations in the expression levels of the highly conserved transactive response DNA binding protein 43 (TDP43), cause amyotrophic lateral sclerosis (ALS) and fronto-temporal dementia (FTD)[1,2,3,4,5]

  • We assessed the effects of Mucuna pruriens (Mpe) or Withania somnifera (Wse) on the climbing behaviour of Transactive Response DNA-binding protein-43 (TDP-43) mutant flies, treated with Mpe or Wse supplemented in food (0.1% w/w) upon eclosion

  • In our earlier studies in a Drosophila model of ALS-superoxide dismutase-1 (SOD1) overexpression, we reported that Mpe and Wse extracts ameliorated SOD1-induced pathologies[27]

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Summary

Introduction

Alterations in the expression levels of the highly conserved transactive response DNA binding protein 43 (TDP43), cause amyotrophic lateral sclerosis (ALS) and fronto-temporal dementia (FTD)[1,2,3,4,5]. Results Mpe or Wse treatment ameliorates the climbing and locomotion behaviour of TDP-43 mutant flies. TDP-43 mutant flies showed a significant increase in the climbing time in both age groups tested with respect to the control.

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