SNCA (α-synuclein)-induced toxicity in yeast cells is dependent on sirtuin 2 (Sir2)-mediated mitophagy

Belém Sampaio-Marques1, Carolina Felgueiras, Alexandra Silva

  • 1Life and Health Sciences Research Institute (ICVS), School of Health Sciences, University of Minho, Braga, Portugal.

Autophagy
|August 24, 2012
PubMed

Insights

Alpha-synuclein (SNCA) toxicity shortens yeast lifespan, increasing mitophagy. Sir2 regulates this mitophagy, suggesting it

Area of Science:

  • Neuroscience
  • Cell Biology
  • Genetics

Background:

  • Alpha-synuclein (SNCA) misfolding and aggregation are linked to Parkinson disease (PD) pathogenesis.
  • SNCA impacts cellular protein quality control, including the ubiquitin-proteasome system (UPS) and autophagy.
  • The role of autophagy and mitophagy in sporadic and familial PD remains unclear.

Purpose of the Study:

  • To investigate the contribution of autophagy/mitophagy to SNCA toxicity in yeast.
  • To explore the role of the SIR2 gene in SNCA-induced toxicity and mitophagy.

Main Methods:

  • Heterologous expression of wild-type and A53T mutant human SNCA in Saccharomyces cerevisiae.
  • Assessment of chronological life span (CLS) and autophagy/mitophagy activity.
  • Genetic manipulation involving deletion of mitophagy-related genes (ATG11, ATG32) and SIR2.

Main Results:

  • SNCA expression reduced yeast CLS and increased autophagy and mitophagy.
  • Impairing mitophagy (ATG11 or ATG32 deletion) extended CLS, confirming mitophagy's role in SNCA toxicity.
  • SIR2 deletion abolished autophagy and mitophagy, rescuing cells from SNCA toxicity.

Conclusions:

  • Increased mitophagy activity is linked to SNCA-induced toxicity during aging.
  • Sir2 regulates both autophagy and mitophagy, with Sir2-mediated regulation of ATG32 being crucial for SNCA toxicity.
  • This yeast model provides insights into the role of mitophagy in PD pathogenesis.

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