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黏着因子 syndecan-1 调节哺乳类皮质发育过程中神经祖细胞的维持和增殖。

The niche factor syndecan-1 regulates the maintenance and proliferation of neural progenitor cells during mammalian cortical development.

机构信息

Neural Stem Cell Institute, Rensselaer, New York, United States of America.

出版信息

PLoS One. 2012;7(8):e42883. doi: 10.1371/journal.pone.0042883. Epub 2012 Aug 24.

Abstract

Neural progenitor cells (NPCs) divide and differentiate in a precisely regulated manner over time to achieve the remarkable expansion and assembly of the layered mammalian cerebral cortex. Both intrinsic signaling pathways and environmental factors control the behavior of NPCs during cortical development. Heparan sulphate proteoglycans (HSPG) are critical environmental regulators that help modulate and integrate environmental cues and downstream intracellular signals. Syndecan-1 (Sdc1), a major transmembrane HSPG, is highly enriched in the early neural germinal zone, but its function in modulating NPC behavior and cortical development has not been explored. In this study we investigate the expression pattern and function of Sdc1 in the developing mouse cerebral cortex. We found that Sdc1 is highly expressed by cortical NPCs. Knockdown of Sdc1 in vivo by in utero electroporation reduces NPC proliferation and causes their premature differentiation, corroborated in isolated cells in vitro. We found that Sdc1 knockdown leads to reduced levels of β-catenin, indicating reduced canonical Wnt signaling. Consistent with this, GSK3β inhibition helps rescue the Sdc1 knockdown phenotype, partially restoring NPC number and proliferation. Moreover, exogenous Wnt protein promotes cortical NPC proliferation, but this is prevented by Sdc1 knockdown. Thus, Sdc1 in the germinal niche is a key HSPG regulating the maintenance and proliferation of NPCs during cortical neurogenesis, in part by modulating the ability of NPCs to respond to Wnt ligands.

摘要

神经祖细胞 (NPC) 以精确调控的方式分裂和分化,随着时间的推移实现哺乳动物大脑皮层的显著扩张和组装。内在信号通路和环境因素共同控制着 NPC 在皮质发育过程中的行为。硫酸乙酰肝素蛋白聚糖 (HSPG) 是关键的环境调节剂,有助于调节和整合环境线索和下游细胞内信号。黏附素-1 (Sdc1) 是一种主要的跨膜 HSPG,在早期神经生发区高度富集,但它在调节 NPC 行为和皮质发育中的功能尚未被探索。在这项研究中,我们研究了 Sdc1 在发育中的小鼠大脑皮层中的表达模式和功能。我们发现 Sdc1 在皮质 NPC 中高度表达。通过体内电穿孔对 Sdc1 进行基因敲低会减少 NPC 的增殖并导致其过早分化,这在体外分离的细胞中得到了证实。我们发现 Sdc1 敲低导致 β-连环蛋白水平降低,表明经典 Wnt 信号通路减少。与此一致的是,GSK3β 抑制有助于挽救 Sdc1 敲低表型,部分恢复 NPC 数量和增殖。此外,外源性 Wnt 蛋白促进皮质 NPC 的增殖,但 Sdc1 敲低会阻止这种增殖。因此,生发基质中的 Sdc1 是一种关键的 HSPG,通过调节 NPC 对 Wnt 配体的反应能力,在皮质神经发生过程中维持和促进 NPC 的增殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7641/3427302/fa273e79e9fb/pone.0042883.g001.jpg

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