Gregg Christopher, Weiss Samuel
Genes and Development Research Group, Hotchkiss Brain Institute, University of Calgary Faculty of Medicine, 3330 Hospital Drive NW, Calgary, Alberta T2N 4N1, Canada.
Development. 2005 Feb;132(3):565-78. doi: 10.1242/dev.01592. Epub 2005 Jan 5.
The extrinsic signaling pathways responsible for the formation and maintenance of the unique laminar organization of the forebrain germinal zones are largely unknown. In the present study, we asked whether ciliary neurotrophic factor (CNTF)/leukemia inhibitory factor (LIF)/gp130 signaling plays a role in the development of the germinal layers in the lateral ganglionic eminence. We found that CNTF/LIF/gp130 receptor signaling promotes the self-renewal/expansion of a subpopulation of fibroblast growth factor-responsive ventricular zone (VZ) precursors in the ventral forebrain. Analysis of Lifr-/- mice suggests that CNTF/LIF/gp130 signaling maintains a subpopulation of GSH2+ VZ precursors, which are necessary for normal growth of the early ventral forebrain and for maintaining a gradient of VZ precursor differentiation in the lateral ganglionic eminence, as defined by GSH2, MASH1 and DLX2 expression. Furthermore, addition of exogenous CNTF to embryonic forebrain explant cultures deprived of choroid plexus-derived CNTF, was sufficient to promote a VZ differentiation gradient. In contrast to the forebrain, CNTF/LIF/gp130 signaling reduced, rather than enhanced, precursor self-renewal/expansion in the spinal cord. These results demonstrate a novel region-specific role for CNTF/LIF/gp130 signaling in the development of the germinal layers of the embryonic telencephalon.
负责前脑生发区独特分层组织形成和维持的外在信号通路在很大程度上尚不清楚。在本研究中,我们探究了睫状神经营养因子(CNTF)/白血病抑制因子(LIF)/gp130信号通路在外侧神经节隆起生发层发育中是否发挥作用。我们发现,CNTF/LIF/gp130受体信号通路促进了腹侧前脑成纤维细胞生长因子反应性脑室区(VZ)前体细胞亚群的自我更新/扩增。对Lifr-/-小鼠的分析表明,CNTF/LIF/gp130信号通路维持了GSH2+ VZ前体细胞亚群,这对于早期腹侧前脑的正常生长以及维持外侧神经节隆起中由GSH2、MASH1和DLX2表达所定义的VZ前体细胞分化梯度是必需的。此外,向缺乏脉络丛来源的CNTF的胚胎前脑外植体培养物中添加外源性CNTF,足以促进VZ分化梯度。与前脑相反,CNTF/LIF/gp130信号通路减少而非增强了脊髓前体细胞的自我更新/扩增。这些结果证明了CNTF/LIF/gp130信号通路在胚胎端脑生发层发育中具有新的区域特异性作用。