Drosophila melanogaster LRPPRC2 is involved in coordination of mitochondrial translation

Francesca Baggio1, Ana Bratic1, Arnaud Mourier1

  • 1Department of Mitochondrial Biology, Max Planck Institute for Biology of Ageing, Cologne 50931, Germany.

Nucleic Acids Research
|November 28, 2014
PubMed

Insights

Pentatricopeptide repeat domain (PPR) proteins regulate gene expression. This study reveals DmLRPPRC2, a PPR protein, is crucial for mitochondrial translation and respiratory chain function in fruit flies.

Area of Science:

  • Mitochondrial biology
  • Gene regulation
  • Molecular genetics

Background:

  • Pentatricopeptide repeat (PPR) domain proteins are essential for post-transcriptional control of organelle gene expression.
  • Mutations in LRPPRC cause neurodegeneration, highlighting PPR proteins' role in human health.
  • The mammalian LRPPRC and Drosophila DmLRPPRC1 are vital for mitochondrial translation.

Purpose of the Study:

  • To characterize DmLRPPRC2, a second fruit fly homolog of LRPPRC.
  • To investigate the function of DmLRPPRC2 in mitochondrial gene expression and organismal health.

Main Methods:

  • Characterization of DmLRPPRC2 localization and interactions.
  • Analysis of mitochondrial transcript levels, polyadenylation, and translation upon DmLrpprc2 downregulation.
  • Assessment of respiratory chain function, development, and lifespan.

Main Results:

  • DmLRPPRC2 localizes to mitochondria and interacts with DmSLIRP2.
  • Downregulation of DmLrpprc2 leads to respiratory chain dysfunction, developmental delay, and reduced lifespan.
  • DmLRPPRC2 deficiency alters mitochondrial transcript association with ribosomes and protein production, causing respiratory chain complex deficiency.

Conclusions:

  • DmLRPPRC2 is essential for proper mitochondrial translation and respiratory chain function.
  • Its role involves ensuring orderly presentation of mitochondrial transcripts to ribosomes, preventing translation errors.
  • DmLRPPRC2 dysfunction leads to severe consequences for mitochondrial health and organismal viability.