Notch-regulated oligodendrocyte specification from radial glia in the spinal cord of zebrafish embryos

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초록

During vertebrate neural development, many dividing neuroepithelial precursors adopt features of radial glia, which are now known to also serve as neural precursors. In mammals, most radial glia do not persist past early postnatal stages, whereas zebrafish maintain large numbers of radial glia into adulthood. The mechanisms that maintain and specify radial glia for different fates are still poorly understood. We investigated formation of radial glia in the spinal cord of zebrafish and the role of Notch signaling in their maintenance and specification. We found that spinal cord precursors begin to express gfap(+), a marker of radial glia, during neurogenesis and that gfap cells give rise to both neurons and oligodendrocytes. We also determined that Notch signaling is continuously required during embryogenesis to maintain radial glia, limit motor neuron formation and permit oligodendrocyte development, but that radial glia seem to be refractory to changes in Notch activity in postembryonic animals.

키워드

spinal cordoligodendrocytemotor neuronradial gliazebrafish transgenicNotchFIBRILLARY ACIDIC PROTEINNEURAL STEM-CELLSSUBVENTRICULAR ZONEADULT NEUROGENESISVENTRICULAR ZONECEREBRAL-CORTEXIN-VIVOLINEAGEOLIG2EXPRESSION
제목
Notch-regulated oligodendrocyte specification from radial glia in the spinal cord of zebrafish embryos
저자
Kim, HoShin, JimannKim, SuhyunPoling, JustinPark, Hae-ChulAppe, Bruce
DOI
10.1002/dvdy.21620
발행일
2008-08
유형
Article
저널명
Developmental Dynamics
237
8
페이지
2081 ~ 2089