Oxidant production and SOD1 protein expression in single skeletal myofibers from Down syndrome mice

Patrick M Cowley1, Divya R Nair2, Lara R DeRuisseau3

  • 1Syracuse University, Department of Exercise Science, Syracuse, NY, USA; University of California and Veterans Affairs Medical Center, San Francisco, CA, USA.

Redox Biology
|July 12, 2017
PubMed

Insights

Down syndrome muscle weakness is not linked to increased oxidative stress. Ts65Dn mice, a Down syndrome model, show lower basal oxidant levels despite higher SOD1 expression, suggesting other factors cause muscle dysfunction.

Area of Science:

  • Genetics
  • Molecular Biology
  • Physiology

Background:

  • Down syndrome (DS) is characterized by muscle weakness, potentially linked to oxidative stress.
  • Superoxide dismutase 1 (SOD1) gene triplication on chromosome 21 is implicated in elevated SOD1 expression and oxidative stress in DS.
  • The Ts65Dn mouse is a model for DS, exhibiting muscle weakness, but the role of oxidative stress in its skeletal muscle is unclear.

Purpose of the Study:

  • To investigate the association between SOD1 protein expression and oxidant production in skeletal muscle of Ts65Dn mice.
  • To determine if elevated SOD1 in Ts65Dn mice leads to increased oxidative stress in skeletal myofibers.

Main Methods:

  • Skeletal myofibers from the flexor digitorum brevis of Ts65Dn and control mice were analyzed.
  • Oxidant production was measured using 2',7'-dichlorodihydrofluorescein diacetate (DCFH2-DA) in basal and stimulated states.
  • SOD1 protein levels were assessed in conjunction with oxidant measurements.

Main Results:

  • Ts65Dn myofibers showed significantly decreased basal oxidant levels (DCF emissions) despite a threefold increase in SOD1 protein expression.
  • Stimulated contraction did not alter oxidant levels in myofibers from either Ts65Dn or control mice.
  • Myofibers from Ts65Dn mice exhibited smaller size and reduced myonuclear domain.

Conclusions:

  • Elevated SOD1 protein expression in Ts65Dn mouse skeletal muscle is not associated with increased basal oxidative stress.
  • The observed skeletal muscle dysfunction in the Ts65Dn mouse model is likely not driven by oxidative stress.
  • Further research is needed to identify the specific mechanisms underlying skeletal muscle dysfunction in Down syndrome.