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Advances in defining signaling networks for the establishment of neuronal polarity

机译:定义信号网络建立神经元极性的前进

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Neurons are highly polarized cells that have structurally and functionally distinct processes called axons and dendrites. How neurons establish polarity is one of the fundamental questions of neuroscience. In the last decade, significant progress has been made in identifying and understanding the molecular mechanisms responsible for neuronal polarization, primarily through researches conducted on cultured neurons. Advances in phosphoproteomics technologies and molecular tools have enabled comprehensive signal analysis and visualization and manipulation of signaling molecules for analyzing neuronal polarity. Furthermore, advances in gene transfer techniques have revealed the role of extracellular and intracellular signaling molecules in neuronal polarization in vivo. This review discusses the latest insights and techniques for the elucidation of the molecular mechanisms that control neuronal polarity.
机译:神经元是高度偏振的细胞,其具有具有称为轴突和树突的结构上和功能性不同的过程。 神经元如何建立极性是神经科学的基本问题之一。 在过去的十年中,在鉴定和理解身份的分子机制,主要通过在培养神经元对培养的神经元进行的研究来识别和理解重大进展。 磷蛋白质技术和分子工具的进步使能够进行全面的信号分析和可视化和操纵信号分子,用于分析神经元极性。 此外,基因转移技术的进步已经揭示了细胞外和细胞内信号传导分子在体内神经元偏振中的作用。 本综述讨论了用于阐明控制神经元极性的分子机制的最新见解和技术。

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