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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Heterogeneity of Notch signaling in astrocytes and the effects of GFAP and vimentin deficiency
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Heterogeneity of Notch signaling in astrocytes and the effects of GFAP and vimentin deficiency

机译:星形胶质细胞中Notch信号的异质性及GFAP和波形蛋白缺乏的影响

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Astrocytes have multiple roles in the CNS including control of adult neurogenesis. We recently showed that astrocyte inhibition of neurogenesis through Notch signaling depends on the intermediate filament proteins glial fibrillary acidic protein (GFAP) and vimentin. Here, we used real-time quantitative PCR to analyze gene expression in individual mouse astrocytes in primary cultures and in GFAP(POS) or Aldh1L1(POS) astrocytes freshly isolated from uninjured, contralesional and lesioned hippocampus 4days after entorhinal cortex lesion. To determine the Notch signaling competence of individual astrocytes, we measured the mRNA levels of Notch ligands and Notch1 receptor. We found that whereas most cultured and freshly isolated astrocytes were competent to receive Notch signals, only a minority of astrocytes were competent to send Notch signals. Injury increased the fraction of astrocyte subpopulation unable to send and receive Notch signals, thus resembling primary astrocytes invitro. Astrocytes deficient of GFAP and vimentin showed decreased Notch signal sending competence and altered expression of Notch signaling pathway-related genes Dlk2, Notch1, and Sox2. Furthermore, we identified astrocyte subpopulations based on their mRNA and protein expression of nestin and HB-EGF. This study improves our understanding of astrocyte heterogeneity, and points to astrocyte cytoplasmic intermediate filaments as targets for neural cell replacement strategies.
机译:星形胶质细胞在中枢神经系统中具有多种作用,包括控制成年神经发生。我们最近表明星形胶质细胞通过Notch信号抑制神经发生取决于中间丝蛋白,胶质原纤维酸性蛋白(GFAP)和波形蛋白。在这里,我们使用实时定量PCR分析原代培养物中单个小鼠星形胶质细胞以及内脏皮质病变4天后从未受伤,对侧和病变海马新鲜分离的GFAP(POS)或Aldh1L1(POS)星形胶质细胞中的基因表达。为了确定单个星形胶质细胞的Notch信号传导能力,我们测量了Notch配体和Notch1受体的mRNA水平。我们发现,尽管大多数培养和新鲜分离的星形胶质细胞都能接收Notch信号,但只有少数星形胶质细胞能够传递Notch信号。损伤增加了无法发送和接收Notch信号的星形胶质细胞亚群的比例,因此类似于原代星形胶质细胞的体外。缺乏GFAP和波形蛋白的星形胶质细胞显示Notch信号发送能力下降,Notch信号通路相关基因Dlk2,Notch1和Sox2的表达改变。此外,我们根据巢蛋白和HB-EGF的mRNA和蛋白表达鉴定了星形胶质细胞亚群。这项研究提高了我们对星形胶质细胞异质性的理解,并指出星形胶质细胞胞质中间丝是神经细胞替代策略的目标。

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