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恒星诞生:神经发生机制的新见解。

A star is born: new insights into the mechanism of astrogenesis.

机构信息

Astrocyte Biology and Neurodegeneration, Netherlands Institute for Neuroscience, an Institute of the Royal Netherlands Academy of Arts and Sciences, Meibergdreef 47, 1105 BA, Amsterdam, The Netherlands.

出版信息

Cell Mol Life Sci. 2014 Feb;71(3):433-47. doi: 10.1007/s00018-013-1435-9. Epub 2013 Aug 2.

Abstract

Astrocytes emerge as crucial cells for proper neuronal functioning in the developing and adult brain. Neurons and astrocytes are sequentially generated from the same pool of neural stem cells (NSCs). Tight regulation of the neuron-to-astrocyte switch is critical for (1) the generation of a balanced number of astrocytes and neurons and (2) neuronal circuit formation, since newborn astrocytes regulate synapse formation. This review focuses on signaling pathways that instruct astrogenesis, incorporating recently discovered intrinsic and extrinsic regulators. The canonical pathway of astrocytic gene expression, JAK/STAT signaling, is inhibited during neurogenesis to prevent premature astrocyte differentiation. At the onset of astrogenesis, Notch signaling induces epigenetic remodeling of astrocytic genes like glial fibrillary acidic protein to change NSC competence. In turn, astrogenesis is initiated by signals received from newborn neurons. We highlight how key molecular pathways like JAK/STAT and Notch are integrated in a complex network of environmental signals and epigenetic and transcriptional regulators to determine NSC differentiation. It is essential to understand NSC differentiation in respect to future NSC-based therapies for brain diseases, as transplanted NSCs preferentially become astrocytes. As emphasized in this review, many clues in this respect can be learned from development.

摘要

星形胶质细胞在发育和成熟大脑中对神经元的正常功能起着至关重要的作用。神经元和星形胶质细胞是由同一批神经干细胞(NSC)依次产生的。神经元到星形胶质细胞转换的严格调控对于(1)产生平衡数量的星形胶质细胞和神经元,以及(2)神经元回路形成至关重要,因为新生星形胶质细胞调节突触形成。本综述重点介绍了指导星形胶质细胞发生的信号通路,包括最近发现的内在和外在调节因子。星形胶质细胞基因表达的经典通路,JAK/STAT 信号通路,在神经发生过程中被抑制,以防止过早的星形胶质细胞分化。在星形胶质细胞发生的开始,Notch 信号诱导星形胶质细胞基因如胶质纤维酸性蛋白的表观遗传重塑,以改变 NSC 的能力。反过来,新生神经元接收的信号启动星形胶质细胞发生。我们强调了像 JAK/STAT 和 Notch 这样的关键分子通路如何整合在一个复杂的环境信号、表观遗传和转录调节网络中,以决定 NSC 的分化。了解 NSC 分化对于未来基于 NSC 的脑部疾病治疗至关重要,因为移植的 NSC 更倾向于成为星形胶质细胞。正如本综述所强调的,在这方面有许多线索可以从发育中学习到。

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