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Transcriptomic analysis reveals mitochondrial pathways associated with distinct adolescent behavioral phenotypes and
Thamyris Santos-Silva1, Doğukan Hazar Ülgen2, Caio Fábio Baeta Lopes3
1Department of Pharmacology, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, Brazil.
Translational Psychiatry
|November 17, 2023
Summary
Adolescent stress and distinct behaviors alter prefrontal cortex mitochondria gene expression and respiratory capacity. These mitochondrial changes are linked to behavioral differences and stress impacts in the developing brain.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Adolescent brain development shows significant variability in cortical dynamics and behavior.
- Mitochondrial gene expression in the prefrontal cortex (PFC) is crucial for brain maturation and mental health.
- The impact of adolescent stress on PFC mitochondria and associated behaviors is not fully understood.
Purpose of the Study:
- To investigate changes in PFC mitochondria-related genes and respiratory capacity in adolescent rats with distinct behavioral phenotypes.
- To examine the effects of early adolescent stress on these mitochondrial features and behaviors.
Main Methods:
- Behavioral characterization of adolescent rats (anxiety, sociability, cognition) using standardized tests.
- Genome-wide transcriptional profiling to analyze mitochondria-related gene expression.
- High-resolution respirometry to assess mitochondrial respiratory chain capacity.
Main Results:
- Principal component analysis identified three distinct behavioral clusters: high-behavioral z-score (HBZ), low-behavioral z-score (LBZ), and stressed animals.
- Mitochondria-related genes, particularly those for oxidative phosphorylation, were down-regulated in LBZ and stressed animals.
- LBZ and stressed animals showed reduced PFC phosphorylation capacity and redox dysregulation, with specific genes (Ndufa10, Cox6a1) identified as central.
- Down-regulation of oxidative phosphorylation genes correlated positively with behavioral z-scores.
Conclusions:
- Distinct adolescent behavioral phenotypes are associated with specific alterations in PFC mitochondria.
- Early adolescent stress negatively impacts PFC mitochondria function, leading to reduced respiratory capacity and redox dysregulation.
- Mitochondrial dysfunction in the PFC may underlie behavioral variability and the consequences of adolescent stress.

