Department of Biology, Drexel University, Papadakis Integrated Sciences Building 423, 3245 Chestnut St, Philadelphia, PA 19104, USA.
Department of Biology, Drexel University, Papadakis Integrated Sciences Building 423, 3245 Chestnut St, Philadelphia, PA 19104, USA.
Curr Opin Neurobiol. 2022 Aug;75:102557. doi: 10.1016/j.conb.2022.102557. Epub 2022 May 21.
Neuronal morphogenesis is guided by outside-in signals and inside-out mechanisms, which require spatiotemporal precision. How the intracellular mechanisms of neuronal morphogenesis are spatiotemporally controlled is not well understood. Septins comprise a unique GTPase module, which consists of complexes with differential localizations and functions. Septins demarcate distinct membrane domains in neural precursor cells, orienting the axis of cell division and the sites of neurite formation. By controlling the localization of membrane and cytoskeletal proteins, septins promote axon-dendrite formation and polarity. Furthermore, septins modulate vesicle exocytosis at pre-synaptic terminals, and stabilize dendritic spines and post-synaptic densities in a phospho-regulatable manner. We posit that neuronal septins are topologically and functionally specialized for the spatiotemporal regulation of neuronal morphogenesis and plasticity.
神经元形态发生受内外信号和内外机制的指导,这需要时空精度。神经元形态发生的细胞内机制如何受到时空控制还不是很清楚。GTP 酶模块由 septin 组成,它由具有不同定位和功能的复合物组成。 septin 在神经前体细胞中划定不同的膜域,确定细胞分裂的轴和神经突形成的部位。通过控制膜和细胞骨架蛋白的定位,septin 促进轴突-树突的形成和极性。此外,septin 以磷酸化调节的方式调节突触前末端囊泡的胞吐作用,并稳定树突棘和突触后密度。我们假设神经元 septin 在拓扑和功能上专门用于神经元形态发生和可塑性的时空调节。