Goyal Raman, Spencer Kira A, Borodinsky Laura N
Department of Physiology & Membrane Biology and Institute for Pediatric Regenerative Medicine, Shriners Hospital for Children, University of California Davis School of Medicine, Sacramento, CA, United States.
Front Mol Neurosci. 2020 Apr 24;13:62. doi: 10.3389/fnmol.2020.00062. eCollection 2020.
Ion channels are expressed throughout nervous system development. The type and diversity of conductances and gating mechanisms vary at different developmental stages and with the progressive maturational status of neural cells. The variety of ion channels allows for distinct signaling mechanisms in developing neural cells that in turn regulate the needed cellular processes taking place during each developmental period. These include neural cell proliferation and neuronal differentiation, which are crucial for developmental events ranging from the earliest steps of morphogenesis of the neural tube through the establishment of neuronal circuits. Here, we compile studies assessing the ontogeny of ionic currents in the developing nervous system. We then review work demonstrating a role for ion channels in neural tube formation, to underscore the necessity of the signaling downstream ion channels even at the earliest stages of neural development. We discuss the function of ion channels in neural cell proliferation and neuronal differentiation and conclude with how the regulation of all these morphogenetic and cellular processes by electrical activity enables the appropriate development of the nervous system and the establishment of functional circuits adapted to respond to a changing environment.
离子通道在整个神经系统发育过程中均有表达。电导类型和多样性以及门控机制在不同发育阶段和神经细胞的渐进成熟状态下会有所不同。离子通道的多样性使得发育中的神经细胞具有独特的信号传导机制,进而调节每个发育时期所需的细胞过程。这些过程包括神经细胞增殖和神经元分化,它们对于从神经管形态发生的最早步骤到神经元回路建立等一系列发育事件至关重要。在此,我们汇总了评估发育中神经系统离子电流个体发生的研究。然后,我们回顾了证明离子通道在神经管形成中作用的工作,以强调即使在神经发育的最早阶段离子通道下游信号传导的必要性。我们讨论了离子通道在神经细胞增殖和神经元分化中的功能,并最后阐述了电活动如何对所有这些形态发生和细胞过程进行调节,从而使神经系统得以正常发育并建立起适应不断变化环境的功能回路。