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Glial type specific regulation of CNS angiogenesis by HIFα-activated different signaling pathways
- Source :
- Nature Communications, Vol 11, Iss 1, Pp 1-17 (2020), Nature Communications, Nature communications, vol 11, iss 1
- Publication Year :
- 2020
- Publisher :
- Nature Publishing Group, 2020.
-
Abstract
- The mechanisms by which oligodendroglia modulate CNS angiogenesis remain elusive. Previous in vitro data suggest that oligodendroglia regulate CNS endothelial cell proliferation and blood vessel formation through hypoxia inducible factor alpha (HIFα)-activated Wnt (but not VEGF) signaling. Using in vivo genetic models, we show that HIFα in oligodendroglia is necessary and sufficient for angiogenesis independent of CNS regions. At the molecular level, HIFα stabilization in oligodendroglia does not perturb Wnt signaling but rather activates VEGF. At the functional level, genetically blocking oligodendroglia-derived VEGF but not Wnt significantly decreases oligodendroglial HIFα-regulated CNS angiogenesis. Blocking astroglia-derived Wnt signaling reduces astroglial HIFα-regulated CNS angiogenesis. Together, our in vivo data demonstrate that oligodendroglial HIFα regulates CNS angiogenesis through Wnt-independent and VEGF-dependent signaling. These findings suggest an alternative mechanistic understanding of CNS angiogenesis by postnatal glial cells and unveil a glial cell type-dependent HIFα-Wnt axis in regulating CNS vessel formation.<br />In the central nervous system, the maturation of glial cells is temporally and functionally coupled with that of the vascular network during postnatal development. Here the authors show that oligodendroglial HIFα regulates CNS angiogenesis through Wnt-independent and VEGF-dependent signaling, while astroglial HIFα participates through Wnt-dependent signaling.
- Subjects :
- 0301 basic medicine
Male
Vascular Endothelial Growth Factor A
Angiogenesis
Cell
General Physics and Astronomy
Regenerative Medicine
Neovascularization
Mice
0302 clinical medicine
lcsh:Science
Wnt Signaling Pathway
Cells, Cultured
Mice, Knockout
0303 health sciences
Cultured
Multidisciplinary
Wnt signaling pathway
Cell biology
Endothelial stem cell
Oligodendroglia
medicine.anatomical_structure
Hypoxia-inducible factors
Female
Hypoxia-Inducible Factor 1
Signal transduction
medicine.symptom
Blood vessel
Cells
Knockout
1.1 Normal biological development and functioning
Science
Primary Cell Culture
Neovascularization, Physiologic
Developmental neurogenesis
Biology
alpha Subunit
General Biochemistry, Genetics and Molecular Biology
Article
03 medical and health sciences
Prosencephalon
Underpinning research
Genetic model
Developmental biology
medicine
Animals
Physiologic
030304 developmental biology
Cell Proliferation
fungi
Endothelial Cells
General Chemistry
Newborn
Hypoxia-Inducible Factor 1, alpha Subunit
030104 developmental biology
Animals, Newborn
Astrocytes
lcsh:Q
030217 neurology & neurosurgery
Subjects
Details
- Language :
- English
- ISSN :
- 20411723
- Volume :
- 11
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- Nature Communications
- Accession number :
- edsair.doi.dedup.....f92371bf2ede04db0daec21f732d2c66