
Blood vessels are part of the stem cell niche in the developing cerebral cortex, but their in vivo role in controlling the expansion and differentiation of neural stem cells (NSCs) in development has not been studied. Here, we report that relief of hypoxia in the developing cerebral cortex by ingrowth of blood vessels temporo-spatially coincided with NSC differentiation. Selective perturbation of brain angiogenesis in vessel-specific Gpr124 null embryos, which prevented the relief from hypoxia, increased NSC expansion at the expense of differentiation. Conversely, exposure to increased oxygen levels rescued NSC differentiation in Gpr124 null embryos and increased it further in WT embryos, suggesting that niche blood vessels regulate NSC differentiation at least in part by providing oxygen. Consistent herewith, hypoxia-inducible factor (HIF)-1α levels controlled the switch of NSC expansion to differentiation. Finally, we provide evidence that high glycolytic activity of NSCs is required to prevent their precocious differentiation in vivo Thus, blood vessel function is required for efficient NSC differentiation in the developing cerebral cortex by providing oxygen and possibly regulating NSC metabolism.
570, Biochemistry & Molecular Biology, INDUCIBLE FACTOR-1-ALPHA, stem cell metabolism, Neovascularization, Physiologic, INTERMEDIATE PROGENITOR CELLS, BASAL PROGENITORS, OXYGEN, NEUROGENESIS, hypoxia; neural stem cell; neurogenesis; stem cell metabolism; vascular niche; molecular biology; biochemistry, genetics and molecular biology (all); immunology and microbiology (all); neuroscience (all), neural stem cell, Mice, Neural Stem Cells, Animals, CNS ANGIOGENESIS, Hypoxia, 11 Medical and Health Sciences, Cell Proliferation, info:eu-repo/classification/ddc/570, hypoxia; neural stem cell; neurogenesis; stem cell metabolism; vascular niche, Cerebral Cortex, Science & Technology, vascular niche, biology, hypoxia, 31 Biological sciences, Cell Differentiation, Cell Biology, EXPANSION, 32 Biomedical and clinical sciences, 06 Biological Sciences, Hypoxia-Inducible Factor 1, alpha Subunit, Life sciences, PROTEIN-COUPLED RECEPTOR, Oxygen, neurogenesis, GROWTH, ddc:570, 08 Information and Computing Sciences, Life Sciences & Biomedicine, Glycolysis, RADIAL GLIA, Developmental Biology
570, Biochemistry & Molecular Biology, INDUCIBLE FACTOR-1-ALPHA, stem cell metabolism, Neovascularization, Physiologic, INTERMEDIATE PROGENITOR CELLS, BASAL PROGENITORS, OXYGEN, NEUROGENESIS, hypoxia; neural stem cell; neurogenesis; stem cell metabolism; vascular niche; molecular biology; biochemistry, genetics and molecular biology (all); immunology and microbiology (all); neuroscience (all), neural stem cell, Mice, Neural Stem Cells, Animals, CNS ANGIOGENESIS, Hypoxia, 11 Medical and Health Sciences, Cell Proliferation, info:eu-repo/classification/ddc/570, hypoxia; neural stem cell; neurogenesis; stem cell metabolism; vascular niche, Cerebral Cortex, Science & Technology, vascular niche, biology, hypoxia, 31 Biological sciences, Cell Differentiation, Cell Biology, EXPANSION, 32 Biomedical and clinical sciences, 06 Biological Sciences, Hypoxia-Inducible Factor 1, alpha Subunit, Life sciences, PROTEIN-COUPLED RECEPTOR, Oxygen, neurogenesis, GROWTH, ddc:570, 08 Information and Computing Sciences, Life Sciences & Biomedicine, Glycolysis, RADIAL GLIA, Developmental Biology
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