Department of Biology, Faculty of Sciences, Universidad de Chile, Santiago, Chile 7800003.
School of Medical Technology, Faculty of Medicine and Science, Universidad San Sebastián, Santiago, Chile 7510157.
J Neurosci. 2023 Mar 22;43(12):2037-2052. doi: 10.1523/JNEUROSCI.1065-19.2023.
Neuronal polarization is a complex molecular process regulated by intrinsic and extrinsic mechanisms. Nerve cells integrate multiple extracellular cues to generate intracellular messengers that ultimately control cell morphology, metabolism, and gene expression. Therefore, second messengers' local concentration and temporal regulation are crucial elements for acquiring a polarized morphology in neurons. This review article summarizes the main findings and current understanding of how Ca, IP3, cAMP, cGMP, and hydrogen peroxide control different aspects of neuronal polarization, and highlights questions that still need to be resolved to fully understand the fascinating cellular processes involved in axodendritic polarization.
神经元极化是一个复杂的分子过程,受到内在和外在机制的调节。神经细胞整合多种细胞外信号,产生细胞内信使,最终控制细胞形态、代谢和基因表达。因此,第二信使的局部浓度和时间调节是神经元获得极化形态的关键因素。本文综述了钙、IP3、cAMP、cGMP 和过氧化氢如何控制神经元极化的不同方面的主要发现和当前认识,并强调了仍需要解决的问题,以充分理解涉及轴突树突极化的迷人细胞过程。