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CRISPR-Mediated Induction of Neuron-Enriched Mitochondrial Proteins Boosts Direct Glia-to-Neuron Conversion
- Source :
- Cell Stem Cell, Cell Stem Cell 28, 524-534.e7 (2021), Cell stem cell 28(3), 524-534.e7 (2021). doi:10.1016/j.stem.2020.10.015
- Publication Year :
- 2019
-
Abstract
- Summary Astrocyte-to-neuron conversion is a promising avenue for neuronal replacement therapy. Neurons are particularly dependent on mitochondrial function, but how well mitochondria adapt to the new fate is unknown. Here, we determined the comprehensive mitochondrial proteome of cortical astrocytes and neurons, identifying about 150 significantly enriched mitochondrial proteins for each cell type, including transporters, metabolic enzymes, and cell-type-specific antioxidants. Monitoring their transition during reprogramming revealed late and only partial adaptation to the neuronal identity. Early dCas9-mediated activation of genes encoding mitochondrial proteins significantly improved conversion efficiency, particularly for neuron-enriched but not astrocyte-enriched antioxidant proteins. For example, Sod1 not only improves the survival of the converted neurons but also elicits a faster conversion pace, indicating that mitochondrial proteins act as enablers and drivers in this process. Transcriptional engineering of mitochondrial proteins with other functions improved reprogramming as well, demonstrating a broader role of mitochondrial proteins during fate conversion.<br />Graphical abstract<br />Highlights • Mitochondrial proteomes of cortical astrocytes and neurons are distinct • Astrocyte-enriched mitochondrial proteins are downregulated late in neuronal conversion • Neuron-enriched mitochondrial proteins are upregulated late in neuronal conversion • Early induction of neuronal mitochondrial proteins improves neuronal reprogramming<br />Russo et al. identify mitochondrial proteins enriched in neurons or astrocytes. Astrocyte-enriched mitochondrial proteins are often only partially downregulated during astrocyte-to-neuron direct reprogramming. Neuron-enriched ones are upregulated late and mainly in reprogrammed neurons. CRISPRa-mediated early induction of neuron-enriched mitochondrial proteins boosts direct neuronal reprogramming speed and efficiency.
- Subjects :
- Cell type
antioxidant
proteome
SOD1
Mitochondrion
Biology
Mitochondrial Proteins
03 medical and health sciences
Short Article
0302 clinical medicine
ddc:570
medicine
Genetics
CRISPR
Clustered Regularly Interspaced Short Palindromic Repeats
Cells, Cultured
CRISPR-a
030304 developmental biology
Neurons
0303 health sciences
direct reprogramming
metabolism
mitochondria
Correction
Cell Biology
Cell biology
ddc
medicine.anatomical_structure
nervous system
Astrocytes
Proteome
Molecular Medicine
genetics [Mitochondrial Proteins]
Neuron
Reprogramming
Neuroglia
030217 neurology & neurosurgery
Function (biology)
Subjects
Details
- ISSN :
- 18759777
- Volume :
- 28
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- Cell stem cell
- Accession number :
- edsair.doi.dedup.....9f8b14cf274b565ef82cd6dd243d979c
- Full Text :
- https://doi.org/10.1016/j.stem.2020.10.015