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Published on: June 7, 2024
Obtaining mice that carry human mitochondrial DNA transmitted to the progeny
Vassilina A Sokolova1, Maria E Kustova, Natalia I Arbuzova
1Department of Molecular Genetics, Institute for Experimental Medicine, 12 Pavlov str., Saint-Petersburg, Russia.
Abstract:
To study human diseases associated with mutations in mitochondrial DNA one needs an animal model in which the distribution of abnormal mtDNA and its impact on the phenotype might be followed. We isolated human mitochondria from HepG2 cell culture and microinjected them into murine zygotes, upon which those were transplanted to the pseudopregnant mice. PCR with species-specific primers allowed detecting human mtDNA in the tissues of 7-13-day embryos. No serious alterations in the development of transmitochondrial embryos were noticed. Among various organs/tissues of the 13-day embryos, human mtDNA was detected only in the heart, skeletal muscles, and stomach, which is in line with its uneven distribution among the blastomeres of an early mouse embryo that we described previously. In four recipient females, the microinjected zygotes were allowed to develop to term, the four neonate males of their joint litter were sacrificed, and in three of them human mtDNA was detected in the heart, skeletal muscles, stomach, brain, testes, and bladder. Six females of that joint litter were grown and mated to intact males. In the progeny (F1) of one of the females two mice were carrying human mtDNA in the heart, skeletal muscles, stomach, brain, lungs, uterus, ovaries, and kidneys. The study confirms the possibility to obtain transmitochondrial mice carrying human mtDNA that is transmitted to the animals of the next generation. Our results also indicate that among the organs to which human mtDNA is distributed some are more likely to receive it than others.
Insights
Researchers created transmitochondrial mice by injecting human mitochondria into mouse embryos. These mice carry human mitochondrial DNA (mtDNA) across generations, showing its uneven distribution in various organs.
Area of Science:
- Mitochondrial genetics
- Animal models for human disease
- Developmental biology
Background:
- Studying human mitochondrial DNA (mtDNA) diseases requires animal models to track abnormal mtDNA distribution and phenotypic impact.
- Previous work established uneven mtDNA distribution in early mouse embryos.
Purpose of the Study:
- To develop a transmitochondrial mouse model carrying human mtDNA for disease research.
- To investigate the transmission and distribution of human mtDNA in developing mouse embryos and subsequent generations.
Main Methods:
- Isolation of human mitochondria from HepG2 cells.
- Microinjection of human mitochondria into murine zygotes.
- Transplantation of modified zygotes into pseudopregnant mice.
- Detection of human mtDNA using species-specific PCR in embryos and offspring.
Main Results:
- Human mtDNA was detected in 7-13-day mouse embryos, primarily in the heart, skeletal muscles, and stomach.
- Transmitochondrial mice neonates showed human mtDNA in heart, skeletal muscles, stomach, brain, testes, and bladder.
- The F1 generation exhibited human mtDNA in heart, skeletal muscles, stomach, brain, lungs, uterus, ovaries, and kidneys, confirming germline transmission.
Conclusions:
- Successfully generated transmitochondrial mice harboring human mtDNA, demonstrating its transmission to the next generation.
- Confirmed uneven distribution of human mtDNA across various organs, with some tissues being more susceptible to uptake.
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