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Updated: Apr 20, 2026

Author Spotlight: Exploring Mitochondrial Function and Chemical Toxicity Using Drosophila melanogaster
Published on: November 10, 2023
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.
Abstract:
Members of the pentatricopeptide repeat domain (PPR) protein family bind RNA and are important for post-transcriptional control of organelle gene expression in unicellular eukaryotes, metazoans and plants. They also have a role in human pathology, as mutations in the leucine-rich PPR-containing (LRPPRC) gene cause severe neurodegeneration. We have previously shown that the mammalian LRPPRC protein and its Drosophila melanogaster homolog DmLRPPRC1 (also known as bicoid stability factor) are necessary for mitochondrial translation by controlling stability and polyadenylation of mRNAs. We here report characterization of DmLRPPRC2, a second fruit fly homolog of LRPPRC, and show that it has a predominant mitochondrial localization and interacts with a stem-loop interacting RNA binding protein (DmSLIRP2). Ubiquitous downregulation of DmLrpprc2 expression causes respiratory chain dysfunction, developmental delay and shortened lifespan. Unexpectedly, decreased DmLRPPRC2 expression does not globally affect steady-state levels or polyadenylation of mitochondrial transcripts. However, some mitochondrial transcripts abnormally associate with the mitochondrial ribosomes and some products are dramatically overproduced and other ones decreased, which, in turn, results in severe deficiency of respiratory chain complexes. The function of DmLRPPRC2 thus seems to be to ensure that mitochondrial transcripts are presented to the mitochondrial ribosomes in an orderly fashion to avoid poorly coordinated translation.
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.

