Age-related decrease in the mitochondrial sirtuin deacetylase Sirt3 expression associated with ROS accumulation in the auditory cortex of the mimetic aging rat model

PLoS One. 2014 Feb 4;9(2):e88019. doi: 10.1371/journal.pone.0088019. eCollection 2014.

Abstract

Age-related dysfunction of the central auditory system, also known as central presbycusis, can affect speech perception and sound localization. Understanding the pathogenesis of central presbycusis will help to develop novel approaches to prevent or treat this disease. In this study, the mechanisms of central presbycusis were investigated using a mimetic aging rat model induced by chronic injection of D-galactose (D-Gal). We showed that malondialdehyde (MDA) levels were increased and manganese superoxide dismutase (SOD2) activity was reduced in the auditory cortex in natural aging and D-Gal-induced mimetic aging rats. Furthermore, mitochondrial DNA (mtDNA) 4834 bp deletion, abnormal ultrastructure and cell apoptosis in the auditory cortex were also found in natural aging and D-Gal mimetic aging rats. Sirt3, a mitochondrial NAD+-dependent deacetylase, has been shown to play a crucial role in controlling cellular reactive oxygen species (ROS) homeostasis. However, the role of Sirt3 in the pathogenesis of age-related central auditory cortex deterioration is still unclear. Here, we showed that decreased Sirt3 expression might be associated with increased SOD2 acetylation, which negatively regulates SOD2 activity. Oxidative stress accumulation was likely the result of low SOD2 activity and a decline in ROS clearance. Our findings indicate that Sirt3 might play an essential role, via the mediation of SOD2, in central presbycusis and that manipulation of Sirt3 expression might provide a new approach to combat aging and oxidative stress-related diseases.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Acetylation
  • Aging / genetics
  • Aging / metabolism*
  • Aging / pathology
  • Animals
  • Apoptosis / genetics
  • Auditory Cortex / metabolism*
  • Auditory Cortex / pathology
  • DNA, Mitochondrial / genetics
  • Disease Models, Animal
  • Galactose / genetics
  • Galactose / metabolism
  • Gene Expression / genetics*
  • Malondialdehyde / metabolism
  • Mitochondria / genetics
  • Mitochondria / metabolism*
  • Mitochondria / pathology
  • Oxidative Stress / genetics
  • Presbycusis / genetics
  • Presbycusis / metabolism
  • Presbycusis / pathology
  • Rats
  • Rats, Sprague-Dawley
  • Reactive Oxygen Species / metabolism*
  • Sirtuin 3 / genetics
  • Sirtuin 3 / metabolism*
  • Superoxide Dismutase / genetics
  • Superoxide Dismutase / metabolism

Substances

  • DNA, Mitochondrial
  • Reactive Oxygen Species
  • Malondialdehyde
  • Superoxide Dismutase
  • superoxide dismutase 2
  • Sirtuin 3
  • Galactose

Grants and funding

This work was supported by grants from the Major State Basic Research Development Program of China (973 Program) (No. 2011CB504504), the National twelfth-Five Year Research Program of China (No. 2012BAI12B02), the National Natural Science Foundation of China (No. 81230021, No. 30872865 and No. 30672309), the National Nature Science Foundation of China (No. 81200745), National Nature Science Foundation of China (No. 81000409). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.