Kono Rena, Ikegaya Yuji, Koyama Ryuta
Laboratory of Chemical Pharmacology, Graduate School of Pharmaceutical Sciences, The University of Tokyo.
Nihon Yakurigaku Zasshi. 2023;158(5):348-352. doi: 10.1254/fpj.23004.
Neurons in the brain build circuits by synapsing with each other, and glial cells are involved in the formation and elimination of synapses. Glial cells include microglia, astrocytes, and oligodendrocytes, each with distinctive functions supported by different gene expression patterns and morphologies, but all have been shown to regulate the number of synapses in the neuronal circuits through a common function, synaptic phagocytosis. It has also been reported that specific glial cell types phagocytose specific synapses in different brain regions and at different times, and some of the molecular mechanisms involved in each phagocytotic process have been elucidated. For example, microglia, the most frequently reported glial cell type in relation to synaptic phagocytes, are known to recognize various "eat me signals" including complement and phagocytose synapses, contributing to the refinement of neuronal circuits during development. More recently, astrocytes and oligodendrocyte precursor cells have also been shown to be involved in synaptic phagocytosis. Interestingly, there are also reports of different types of glial cells phagocytosing the same types of synapses. And in some cases, it has been suggested that different glial cell types regulate each other's synaptic phagocytosis. In this review, we will discuss the significance of synaptic phagocytosis by multiple types of glial cells by presenting recent studies on synaptic phagocytosis by glial cells.
大脑中的神经元通过相互突触形成回路,神经胶质细胞参与突触的形成和消除。神经胶质细胞包括小胶质细胞、星形胶质细胞和少突胶质细胞,它们各自具有独特的功能,这些功能由不同的基因表达模式和形态所支持,但所有这些细胞都已被证明可通过共同的功能——突触吞噬作用来调节神经回路中的突触数量。也有报道称,特定类型的神经胶质细胞在不同的脑区和不同的时间吞噬特定的突触,并且已经阐明了每个吞噬过程中涉及的一些分子机制。例如,小胶质细胞是与突触吞噬作用相关报道最多的神经胶质细胞类型,已知它能识别包括补体在内的各种“吃我信号”并吞噬突触,这有助于发育过程中神经回路的精细化。最近,星形胶质细胞和少突胶质前体细胞也被证明参与突触吞噬作用。有趣的是,也有不同类型的神经胶质细胞吞噬相同类型突触的报道。而且在某些情况下,有人提出不同类型的神经胶质细胞相互调节彼此的突触吞噬作用。在这篇综述中,我们将通过介绍神经胶质细胞突触吞噬作用的最新研究来讨论多种类型神经胶质细胞进行突触吞噬作用的意义。