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NFIB-mediated repression of the epigenetic factor Ezh2 regulates cortical development.

The Journal of neuroscience : the official journal of the Society for Neuroscience (2014-02-21)
Michael Piper, Guy Barry, Tracey J Harvey, Robert McLeay, Aaron G Smith, Lachlan Harris, Sharon Mason, Brett W Stringer, Bryan W Day, Naomi R Wray, Richard M Gronostajski, Timothy L Bailey, Andrew W Boyd, Linda J Richards
ZUSAMMENFASSUNG

Epigenetic mechanisms are essential in regulating neural progenitor cell self-renewal, with the chromatin-modifying protein Enhancer of zeste homolog 2 (EZH2) emerging as a central player in promoting progenitor cell self-renewal during cortical development. Despite this, how Ezh2 is itself regulated remains unclear. Here, we demonstrate that the transcription factor nuclear factor IB (NFIB) plays a key role in this process. Nfib(-/-) mice exhibit an increased number of proliferative ventricular zone cells that express progenitor cell markers and upregulation of EZH2 expression within the neocortex and hippocampus. NFIB binds to the Ezh2 promoter and overexpression of NFIB represses Ezh2 transcription. Finally, key downstream targets of EZH2-mediated epigenetic repression are misregulated in Nfib(-/-) mice. Collectively, these results suggest that the downregulation of Ezh2 transcription by NFIB is an important component of the process of neural progenitor cell differentiation during cortical development.

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Monoklonaler ANTI-HA-Antikörper in Maus hergestellte Antikörper, clone HA-7, ascites fluid
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Anti-Phospho-Histon H3 (Ser10)-Antikörper, Mitosemarker, Upstate®, from rabbit
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Anti-NFIB antibody produced in rabbit, Prestige Antibodies® Powered by Atlas Antibodies, affinity isolated antibody, buffered aqueous glycerol solution
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Anti-PAX6-Antikörper, from rabbit, purified by affinity chromatography