The involvement of nuclear factor kappa B (NF-κB) in several processes in the postnatal and adult brain, ranging from neuronal survival to synaptogenesis and plasticity, has been documented. In contrast, little is known about the functions of NF-κB during embryonic brain development. It is shown here that NF-κB is selectively activated in neocortical neural progenitor cells in the developing mouse telencephalon. Blockade of NF-κB activity leads to premature cortical neuronal differentiation and depletion of the progenitor cell pool. Conversely, NF-κB activation causes decreased cortical neurogenesis and expansion of the progenitor cell compartment. These effects are antagonized by the proneuronal transcription factor Hes6, which physically and functionally interacts with RelA-containing NF-κB complexes in cortical progenitor cells. In turn, NF-κB exerts an inhibitory effect on the ability of Hes6 to promote cortical neuronal differentiation. These results reveal previously uncharacterized functions and modes of regulation for NF-κB and Hes6 during cortical neurogenesis.
Interaction and antagonistic roles of NF-κB and Hes6 in the regulation of cortical neurogenesis.
NF-κB 和 Hes6 在皮层神经发生调控中的相互作用和拮抗作用
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作者:Methot Laurent, Hermann Robert, Tang Yeman, Lo Rita, Al-Jehani Hosam, Jhas Sumit, Svoboda Devon, Slack Ruth S, Barker Philip A, Stifani Stefano
| 期刊: | Molecular and Cellular Biology | 影响因子: | 2.700 |
| 时间: | 2013 | 起止号: | 2013 Jul;33(14):2797-808 |
| doi: | 10.1128/MCB.01610-12 | 研究方向: | 神经科学 |
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