Mitochondrial superoxide production negatively regulates neural progenitor proliferation and cerebral cortical development.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 22949407.
- Also identified by DOI 10.1002/stem.1213 and PMC identifier 3479374.
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Abstract
Although high amounts of reactive oxygen species (ROS) can damage cells, ROS can also play roles as second messengers, regulating diverse cellular processes. Here, we report that embryonic mouse cerebral cortical neural progenitor cells (NPCs) exhibit intermittent spontaneous bursts of mitochondrial superoxide (SO) generation (mitochondrial SO flashes) that require transient opening of membrane permeability transition pores (mPTP). This quantal SO production negatively regulates NPC self-renewal. Mitochondrial SO scavengers and mPTP inhibitors reduce SO flash frequency and enhance NPC proliferation, whereas prolonged mPTP opening and SO generation increase SO flash incidence and decrease NPC proliferation. The inhibition of NPC proliferation by mitochondrial SO involves suppression of extracellular signal-regulated kinases. Moreover, mice lacking SOD2 (SOD2-/- mice) exhibit significantly fewer proliferative NPCs and differentiated neurons in the embryonic cerebral cortex at midgestation compared with wild-type littermates. Cultured SOD2-/- NPCs exhibit a significant increase in SO flash frequency and reduced NPC proliferation. Taken together, our findings suggest that mitochondrial SO flashes negatively regulate NPC self-renewal in the developing cerebral cortex.
Medical subject headings
- Animals
- Cell Differentiation
- Cell Proliferation
- Cells, Cultured
- Cerebral Cortex
- Cerebral Cortex/cytology
- Cerebral Cortex/embryology
- Cerebral Cortex/metabolism
- Extracellular Signal-Regulated MAP Kinases
- Extracellular Signal-Regulated MAP Kinases/metabolism
- Female
- Free Radical Scavengers
- Free Radical Scavengers/pharmacology
- Mice
- Mice, Inbred C57BL
- Mitochondria
- Mitochondria/metabolism
- Neural Stem Cells
- Neural Stem Cells/metabolism
- Neural Stem Cells/physiology
- Oligopeptides
- Oligopeptides/pharmacology
- Organophosphorus Compounds
- Organophosphorus Compounds/pharmacology
- Phosphorylation
- Piperidines
- Piperidines/pharmacology
- Protein Processing, Post-Translational
- Spheroids, Cellular
- Spheroids, Cellular/metabolism
- Spheroids, Cellular/physiology
- Superoxide Dismutase
- Superoxide Dismutase/deficiency
- Superoxide Dismutase/genetics
- Superoxides
- Superoxides/metabolism
- Superoxide Dismutase 2