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Two major gate-keepers in the self-renewal of neural stem cells: Erk1/2 and PLCγ1 in FGFR signaling

机译:神经干细胞自我更新的两个主要守门员:FGFR信号传导中的Erk1 / 2和PLCγ1

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Neural stem cells are undifferentiated precursor cells that proliferate, self-renew, and give rise to neuronal and glial lineages. Understanding the molecular mechanisms underlying their self-renewal is an important aspect in neural stem cell biology. The regulation mechanisms governing self-renewal of neural stem cells and the signaling pathways responsible for the proliferation and maintenance of adult stem cells remain largely unknown. In this issue of Molecular Brain [Ma DK et al. Molecular genetic analysis of FGFR1 signaling reveals distinct roles of MAPK and PLCγ1 activation for self-renewal of adult neural stem cells. Molecular Brain 2009, 2:16], characterized the different roles of MAPK and PLCγ1 in FGFR1 signaling in the self-renewal of neural stem cells. These novel findings provide insights into basic neural stem cell biology and clinical applications of potential stem-cell-based therapy.
机译:神经干细胞是未分化的前体细胞,可以增殖,自我更新并产生神经元和神经胶质谱系。了解其自我更新的分子机制是神经干细胞生物学的重要方面。调控神经干细胞自我更新的调控机制以及负责成年干细胞增殖和维持的信号传导途径仍然未知。在本期《分子大脑》中[Ma DK等。 FGFR1信号的分子遗传学分析揭示了MAPK和PLCγ1激活在成人神经干细胞自我更新中的独特作用。 Molecular Brain 2009,2:16],描述了神经干细胞自我更新中MAPK和PLCγ1在FGFR1信号传导中的不同作用。这些新发现为基础神经干细胞生物学和潜在的基于干细胞疗法的临床应用提供了见识。

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