Division of Physiological Genomics, Biomedical Center, Ludwig-Maximilians-Universitaet Munich, Planegg-Martinsried 82152, Germany; Institute of Stem Cell Research, Helmholtz Center Munich, German Research Center for Environmental Health, Oberschleissheim 85764, Germany.
Division of Neurobiology, Ludwig-Maximilians-Universitaet Munich, Planegg-Martinsried 82152, Germany; Max Planck Institute of Neurobiology, Planegg-Martinsried 82152, Germany.
Cell Stem Cell. 2018 Jun 1;22(6):865-878.e8. doi: 10.1016/j.stem.2018.04.016. Epub 2018 May 17.
One hallmark of adult neurogenesis is its adaptability to environmental influences. Here, we uncovered the epithelial sodium channel (ENaC) as a key regulator of adult neurogenesis as its deletion in neural stem cells (NSCs) and their progeny in the murine subependymal zone (SEZ) strongly impairs their proliferation and neurogenic output in the olfactory bulb. Importantly, alteration of fluid flow promotes proliferation of SEZ cells in an ENaC-dependent manner, eliciting sodium and calcium signals that regulate proliferation via calcium-release-activated channels and phosphorylation of ERK. Flow-induced calcium signals are restricted to NSCs in contact with the ventricular fluid, thereby providing a highly specific mechanism to regulate NSC behavior at this special interface with the cerebrospinal fluid. Thus, ENaC plays a central role in regulating adult neurogenesis, and among multiple modes of ENaC function, flow-induced changes in sodium signals are critical for NSC biology.
成年神经发生的一个特点是其对环境影响的适应性。在这里,我们发现上皮钠离子通道(ENaC)是成年神经发生的关键调节因子,因为其在神经干细胞(NSCs)及其在小鼠室管膜下区(SEZ)中的后代中的缺失强烈地损害了它们在嗅球中的增殖和神经发生能力。重要的是,流体流动的改变以 ENaC 依赖的方式促进 SEZ 细胞的增殖,引发钠和钙信号,通过钙释放激活通道和 ERK 的磷酸化来调节增殖。流动诱导的钙信号仅限于与脑室液接触的 NSCs,从而提供了一种高度特异性的机制来调节该与脑脊液的特殊界面处的 NSC 行为。因此,ENaC 在调节成年神经发生中起核心作用,并且在 ENaC 的多种功能模式中,钠信号的流动诱导变化对于 NSC 生物学至关重要。