Molecular Signal Transduction Laboratories, Institute for Microscopic Anatomy and Neurobiology, Johannes Gutenberg University, School of Medicine, Langenbeckstraße 1, 55131 Mainz, Germany.
Focus Program Translational Neuroscience (FTN), Rhine Main Neuroscience Network (rmn2), Johannes Gutenberg University, School of Medicine, Langenbeckstraße 1, 55131 Mainz, Germany.
Nat Commun. 2017 Jun 28;8:15922. doi: 10.1038/ncomms15922.
Adult neural stem cells reside in a specialized niche in the subventricular zone (SVZ). Throughout life they give rise to adult-born neurons in the olfactory bulb (OB), thus contributing to neural plasticity and pattern discrimination. Here, we show that the neurovascular protein EGFL7 is secreted by endothelial cells and neural stem cells (NSCs) of the SVZ to shape the vascular stem-cell niche. Loss of EGFL7 causes an accumulation of activated NSCs, which display enhanced activity and re-entry into the cell cycle. EGFL7 pushes activated NSCs towards quiescence and neuronal progeny towards differentiation. This is achieved by promoting Dll4-induced Notch signalling at the blood vessel-stem cell interface. Fewer inhibitory neurons form in the OB of EGFL7-knockout mice, which increases the absolute signal conducted from the mitral cell layer of the OB but decreases neuronal network synchronicity. Consequently, EGFL7-knockout mice display severe physiological defects in olfactory behaviour and perception.
成体神经干细胞位于侧脑室下区(SVZ)的特定龛位中。在整个生命过程中,它们在嗅球(OB)中产生成体神经元,从而有助于神经可塑性和模式识别。在这里,我们表明,神经血管蛋白 EGFL7 由 SVZ 的内皮细胞和神经干细胞(NSCs)分泌,以塑造血管干细胞龛位。EGFL7 的缺失会导致激活的 NSCs 积累,这些 NSCs 表现出增强的活性并重新进入细胞周期。EGFL7 将激活的 NSCs 推向静止状态,并将神经祖细胞推向分化状态。这是通过促进血管-干细胞界面处的 Dll4 诱导的 Notch 信号来实现的。EGFL7 敲除小鼠的 OB 中形成的抑制性神经元较少,这增加了从 OB 的僧帽细胞层传递的绝对信号,但降低了神经元网络的同步性。因此,EGFL7 敲除小鼠在嗅觉行为和感知方面表现出严重的生理缺陷。