首页> 外文期刊>Frontiers in Cellular Neuroscience >Serping1/C1 Inhibitor Affects Cortical Development in a Cell Autonomous and Non-cell Autonomous Manner
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Serping1/C1 Inhibitor Affects Cortical Development in a Cell Autonomous and Non-cell Autonomous Manner

机译: Serping1 / C1抑制剂以细胞自主和非细胞自主方式影响皮质发育。

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Current knowledge regarding regulation of radial neuronal migration is mainly focused on intracellular molecules. Our unbiased screen aimed at identification of non-cell autonomous mechanisms involved in this process detected differential expression of Serping1 or C1 inhibitor, which is known to inhibit the initiation of the complement cascade. The complement cascade is composed of three pathways; the classical, lectin, and the alternative pathway; the first two are inhibited by C1 inhibitor, and all three converge at the level of C3. Knockdown or knockout of Serping1 affected neuronal stem cell proliferation and impaired neuronal migration in mice. Knockdown of Serping1 by in utero electroporation resulted in a migration delay of the electroporated cells as well as their neighboring cells demonstrating a non-cell autonomous effect. Cellular polarity was also affected. Most importantly, expression of protein components mimicking cleaved C3 rescued the knockdown of Serping1 , indicating complement pathway functionality. Furthermore, we propose that this activity is mediated mainly via the complement peptide C5a receptors. Whereas addition of a selective C3a receptor agonist was minimally effective, the addition of a dual C3aR/C5a receptor agonist significantly rescued Serping1 knockdown-mediated neuronal migration defects. Our findings suggest that modulating Serping1 levels in the developing brain may affect the complement pathway in a complex way. Collectively, our findings demonstrate an unorthodox activity for the complement pathway during brain development.
机译:关于调节regulation神经元迁移的当前知识主要集中在细胞内分子上。我们的无偏筛选旨在鉴定参与此过程的非细胞自主机制,从而检测到Serping1或C1抑制剂的差异表达,已知该抑制剂可抑制补体级联反应的启动。补体级联由三个途径组成。经典,凝集素和替代途径;前两个被C1抑制剂抑制,所有三个都在C3水平上收敛。敲除或敲除Serping1会影响小鼠神经元干细胞增殖并损害神经元迁移。子宫内电穿孔对Serping1的抑制作用导致电穿孔细胞及其相邻细胞的迁移延迟,从而证明了非细胞的自主效应。细胞极性也受到影响。最重要的是,模仿裂解的C3的蛋白质成分的表达挽救了Serping1的敲低,表明补体途径的功能。此外,我们建议这种活性主要是通过补体肽C5a受体介导的。选择性C3a受体激动剂的添加效果最低,而双重C3aR / C5a受体激动剂的添加则大大缓解了Serping1敲低介导的神经元迁移缺陷。我们的发现表明,调节发育中的大脑中Serping1水平可能以复杂的方式影响补体途径。总的来说,我们的发现表明大脑发育过程中补体途径具有非常规活性。

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