International Journal of Molecular Sciences (Mar 2023)

Progressive Motor and Non-Motor Symptoms in <em>Park7</em> Knockout Zebrafish

  • Lakshmi Narasimha Murthy Chavali,
  • Ingeborg Yddal,
  • Ersilia Bifulco,
  • Simen Mannsåker,
  • Dagne Røise,
  • Jack O. Law,
  • Ann-Kristin Frøyset,
  • Sushma N. Grellscheid,
  • Kari E. Fladmark

DOI
https://doi.org/10.3390/ijms24076456
Journal volume & issue
Vol. 24, no. 7
p. 6456

Abstract

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DJ-1 is a redox sensitive protein with a wide range of functions related to oxidative stress protection. Mutations in the park7 gene, which codes for DJ-1 are associated with early onset familial Parkinson’s disease and increased astrocytic DJ-1 levels are found in pathologic tissues from idiopathic Parkinson’s disease. We have previously established a DJ-1 knockout zebrafish line that developed normally, but with aging the DJ-1 null fish had a lowered level of tyrosine hydroxylase, respiratory mitochondrial failure and a lower body mass. Here we have examined the DJ-1 knockout from the early adult stage and show that loss of DJ-1 results in a progressive, age-dependent increase in both motoric and non-motoric symptoms associated to Parkinson’s disease. These changes coincide with changes in mitochondrial and mitochondrial associated proteins. Recent studies have suggested that a decline in NAD+ can contribute to Parkinson’s disease and that supplementation of NAD+ precursors may delay disease progression. We found that the brain NAD+/NADH ratio decreased in aging zebrafish but did not correlate with DJ-1 induced altered behavior. Differences were first observed at the late adult stage in which NAD+ and NADPH levels were decreased in DJ-1 knockouts. Considering the experimental power of zebrafish and the development of Parkinson’s disease-related symptoms in the DJ-1 null fish, this model can serve as a useful tool both to understand the progression of the disease and the effect of suggested treatments.

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