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Trk signaling regulates neural precursor cell proliferation and differentiation during cortical development.

机译:Trk信号调节皮层发育过程中神经前体细胞的增殖和分化。

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Increasing evidence indicates that development of embryonic central nervous system precursors is tightly regulated by extrinsic cues located in the local environment. Here, we asked whether neurotrophin-mediated signaling through Trk tyrosine kinase receptors is important for embryonic cortical precursor cell development. These studies demonstrate that inhibition of TrkB (Ntrk2) and/or TrkC (Ntrk3) signaling using dominant-negative Trk receptors, or genetic knockdown of TrkB using shRNA, caused a decrease in embryonic precursor cell proliferation both in culture and in vivo. Inhibition of TrkB/C also caused a delay in the generation of neurons, but not astrocytes, and ultimately perturbed the postnatal localization of cortical neurons in vivo. Conversely, overexpression of BDNF in cortical precursors in vivo promoted proliferation and enhanced neurogenesis. Together, these results indicate that neurotrophin-mediated Trk signaling plays an essential, cell-autonomous role in regulating the proliferation and differentiation of embryonic cortical precursors and thus controls cortical development at earlier stages than previously thought.
机译:越来越多的证据表明,胚胎中枢神经系统前体的发育受到位于本地环境中的外部线索的严格调控。在这里,我们问神经营养蛋白介导的通过Trk酪氨酸激酶受体的信号传导对胚胎皮质前体细胞发育是否重要。这些研究表明,使用显性负性Trk受体抑制TrkB(Ntrk2)和/或TrkC(Ntrk3)信号,或使用shRNA抑制TrkB的基因,导致培养和体内胚胎前体细胞增殖的减少。 TrkB / C的抑制作用还导致神经元(而非星形胶质细胞)生成的延迟,并最终扰乱了体内皮层神经元的出生后定位。相反,BDNF在体内皮质前体中的过表达促进增殖并增强神经发生。总之,这些结果表明,神经营养蛋白介导的Trk信号传导在调节胚胎皮质前体的增殖和分化中起着至关重要的细胞自治作用,因此比以前认为的要早。

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