Department of Human Anatomy, School of Medicine, Southeast University, Nanjing 210009, China.
Department of Physiology, School of Medicine, Southeast University, Nanjing 210009, China.
Int J Mol Sci. 2023 Sep 10;24(18):13921. doi: 10.3390/ijms241813921.
(forkhead box G1) syndrome is a neurodevelopmental disorder caused by variants in the gene that affect brain structure and function. Individuals affected by syndrome frequently exhibit delayed myelination in neuroimaging studies, which may impair the rapid conduction of nerve impulses. To date, the specific effects of FOXG1 on oligodendrocyte lineage progression and myelination during early postnatal development remain unclear. Here, we investigated the effects of deficiency on myelin development in the mouse brain by conditional deletion of in neural progenitors using mice and tamoxifen induction at postnatal day 0 (P0). We found that deficiency resulted in a transient delay in myelination, evidenced by decreased myelin formation within the first two weeks after birth, but ultimately recovered to the control levels by P30. We also found that deletion prevented the timely attenuation of platelet-derived growth factor receptor alpha (PDGFRα) signaling and reduced the cell cycle exit of oligodendrocyte precursor cells (OPCs), leading to their excessive proliferation and delayed maturation. Additionally, deletion increased the expression of Hes5, a myelin formation inhibitor, as well as Olig2 and Sox10, two promoters of OPC differentiation. Our results reveal the important role of in myelin development and provide new clues for further exploring the pathological mechanisms of syndrome.
(叉头框 G1)综合征是一种神经发育障碍,由影响大脑结构和功能的基因变异引起。受 综合征影响的个体在神经影像学研究中经常表现出髓鞘形成延迟,这可能会损害神经冲动的快速传导。迄今为止,FOXG1 对早期出生后发育过程中少突胶质细胞谱系进展和髓鞘形成的具体影响仍不清楚。在这里,我们使用 Foxg1 条件性敲除小鼠和 P0 时的他莫昔芬诱导,研究了神经祖细胞中 缺失对小鼠大脑髓鞘发育的影响。我们发现, 缺失导致髓鞘形成短暂延迟,表现在出生后前两周内髓鞘形成减少,但最终在 P30 时恢复到对照水平。我们还发现, 缺失阻止了血小板衍生生长因子受体α (PDGFRα)信号的及时衰减,并减少了少突胶质前体细胞 (OPC)的细胞周期退出,导致其过度增殖和成熟延迟。此外, 缺失增加了髓鞘形成抑制剂 Hes5 的表达,以及 OPC 分化的两个促进因子 Olig2 和 Sox10 的表达。我们的结果揭示了 在髓鞘发育中的重要作用,并为进一步探索 综合征的病理机制提供了新的线索。