Korea University Study Links Mitochondrial Dysfunction to Cognitive-Metabolic Impairments
Mitochondria possess their own DNA (mtDNA), which plays important roles in cellular respiration and energy consumption. Mutations in mtDNA can lead to severe human diseases. To advance our understanding of mitochondrial genetic disorders, there is a need to develop suitable animal models with targeted mtDNA mutations.
While previous attempts have been made, in-depth phenotypic changes resulting from mitochondrial gene knockout, i.e., the alterations in observable characteristics when a specific gene is inactivated, remain largely undocumented.
To address this, researchers from
This study led by Dr.
Highlighting the significance of this achievement, senior author
The loss of ND5 gene function resulted in reduced multiprotein complex I expression and ATP levels. Significant changes were observed in the mitochondrial cristae within the cerebral cortex of these mice, accompanied by hippocampal atrophy and asymmetry. Consequently, the behavioural assessments revealed notable learning and memory abnormalities, as indicated by slower movements and an inability to recognize fear.
Since mitochondria have been implicated in metabolic disorders, the researchers conducted metabolic assessments. They observed that the mutant mice were susceptible to obesity and thermogenetic disorders, revealing a link between mitochondrial function and fat tissue metabolism. The ND5 mutant mice faced difficulty in managing their body temperature when exposed to cold, indicating impaired thermoregulation.
The successful development of an animal model carrying a mitochondrial gene mutation is a breakthrough that promises improved functional understanding of other mitochondrial genes.
Future research into novel therapies that target mitochondrial function in humans would impact how clinicians manage common health issues such as obesity and neurodegenerative diseases like Parkinson's and Alzheimer's diseases. The study heralds a hopeful future for the millions affected by mitochondrial disorders.
Reference
Title of original paper: Comprehensive phenotypic assessment of nonsense mutations in mitochondrial ND5 in mice
Journal: Experimental & Molecular Medicine
DOI: 10.1038/s12276-024-01333-9
About Korea University College of Medicine
Website: https://medicine.korea.ac.kr/en/index.do
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SOURCE Korea University College of Medicine
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