functional dicer is necessary for appropriate specification of radial glia during early development of mouse telencephalon功能帽子是必要的适当的规范的径向神经胶质在早期大鼠端脑的发展.pdfVIP

functional dicer is necessary for appropriate specification of radial glia during early development of mouse telencephalon功能帽子是必要的适当的规范的径向神经胶质在早期大鼠端脑的发展.pdf

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functional dicer is necessary for appropriate specification of radial glia during early development of mouse telencephalon功能帽子是必要的适当的规范的径向神经胶质在早期大鼠端脑的发展

Functional Dicer Is Necessary for Appropriate Specification of Radial Glia during Early Development of Mouse Telencephalon Tomasz Jan Nowakowski*, Karolina Sandra Mysiak, Thomas Pratt, David Jonathan Price Developmental Biology Laboratory, Centre for Integrative Physiology, University of Edinburgh, Edinburgh, United Kingdom Abstract Early telencephalic development involves transformation of neuroepithelial stem cells into radial glia, which are themselves neuronal progenitors, around the time when the tissue begins to generate postmitotic neurons. To achieve this transformation, radial precursors express a specific combination of proteins. We investigate the hypothesis that micro RNAs regulate the ability of the early telencephalic progenitors to establish radial glia. We ablate functional Dicer, which is required for the generation of mature micro RNAs, by conditionally mutating the Dicer1 gene in the early embryonic telencephalon and analyse the molecular specification of radial glia as well as their progeny, namely postmitotic neurons and basal progenitors. Conditional mutation of Dicer1 from the telencephalon at around embryonic day 8 does not prevent morphological development of radial glia, but their expression of Nestin, Sox9, and ErbB2 is abnormally low. The population of basal progenitors, which are generated by the radial glia, is disorganised and expanded in Dicer1-/- dorsal telencephalon. While the proportion of cells expressing markers of postmitotic neurons is unchanged, their laminar organisation in the telencephalic wall is disrupted suggesting a defect in radial glial guided migration. We found that the laminar disruption could not be accounted for by a reduction of the population of Cajal Retzius neurons. Together, our data suggest novel roles for micro RNAs during early developmen

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