#mitochondrialscience
Optimized mitoBEs v2 target 70 mouse mitochondrial DNA mutations to improve disease modeling with minimal off-target effects. #MitochondrialScience PMID:39843744, Nature 2025, @Nature https://doi.org/10.1038/s41586-024-08469-8 #Medsky #Pharmsky #RNA #ASHG #ESHG 🧪
Precise modelling of mitochondrial diseases using optimized mitoBEs | Nature
The development of animal models is crucial for studying and treating mitochondrial diseases. Here we optimized adenine and cytosine deaminases to reduce off-target effects on the transcriptome and the mitochondrial genome, improving the accuracy and efficiency of our newly developed mitochondrial base editors (mitoBEs)1. Using these upgraded mitoBEs (version 2 (v2)), we targeted 70 mouse mitochondrial DNA mutations analogous to human pathogenic variants2, establishing a foundation for mitochondrial disease mouse models. Circular RNA-encoded mitoBEs v2 achieved up to 82% editing efficiency in mice without detectable off-target effects in the nuclear genome. The edited mitochondrial DNA persisted across various tissues and was maternally inherited, resulting in F1 generation mice with mutation loads as high as 100% and some mice exhibiting editing only at the target site. By optimizing the transcription activator-like effector (TALE) binding site, we developed a single-base-editing
doi.org
March 26, 2025 at 4:10 AM
Detecting Mitochondrial Free Radicals with Quantum Sensors: From Organelles to a D. melanogaster Model of Neurodegeneration
Brookfield, A. et al.
Paper
Details
#MitochondrialScience #QuantumSensing #NeurodegenerationModel
December 25, 2025 at 9:01 AM