VIB Center for the Biology of Disease, KULeuven Center for Human Genetics, Leuven, Belgium and KULeuven, Department of Development and Regeneration, 3000 Leuven, Belgium
S. Raffaele Scientific Institute/Vita-Salute University, Neuropsychopharmacology Unit, Division of Neuroscience, 20132 Milan, Italy.
J Cell Sci. 2014 Oct 15;127(Pt 20):4409-19. doi: 10.1242/jcs.149815. Epub 2014 Aug 15.
Final morphological polarization of neurons, with the development of a distinct axon and several dendrites, is preceded by phases where they have a non-polarized architecture. The earliest of these phases is that of the round neuron arising from the last mitosis. A second non-polarized stage corresponds to the bipolar neuron, with two morphologically identical neurites. Both phases have their distinctive relevance in the establishment of neuronal polarity. During the round cell stage, a decision is made as to where from the cell periphery a first neurite will form, thus creating the first sign of asymmetry. At the bipolar stage a decision is made as to which of the two neurites becomes the axon in neurons polarizing in vitro, and the leading edge in neurons in situ. In this study, we analysed cytoskeletal and membrane dynamics in cells at these two 'pre-polarity' stages. By means of time lapse imaging in dissociated hippocampal neurons and ex vivo cortical slices, we show that both stages are characterized by polarized intracellular arrangements. However, the stages have distinct temporal hierarchies: polarized actin dynamics marks the site of first polarization in round cells, whereas polarized membrane dynamics precedes asymmetric growth in the bipolar stage.
神经元的最终形态极化,伴随着明显轴突和几个树突的发育,之前经历了非极化结构的阶段。这些阶段中最早的是来自最后一次有丝分裂的圆形神经元。第二个非极化阶段对应于具有两个形态相同的神经突的双极神经元。这两个阶段在建立神经元极性方面都具有独特的重要性。在圆形细胞阶段,细胞决定从细胞外周的何处形成第一个神经突,从而产生不对称的第一个迹象。在双极阶段,决定哪个神经突成为体外极化神经元的轴突,以及原位神经元的前缘。在这项研究中,我们分析了处于这两个“前极性”阶段的细胞中的细胞骨架和膜动态。通过在分离的海马神经元和离体皮质切片中的延时成像,我们表明这两个阶段都具有极化的细胞内排列。然而,这些阶段具有不同的时间层次:极化的肌动蛋白动力学标记圆形细胞中第一次极化的部位,而极化的膜动力学先于双极阶段的不对称生长。