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DNA Damage in Mammalian Neural Stem Cells Leads to Astrocytic Differentiation Mediated by BMP2 Signaling through JAK-STAT

机译:哺乳动物神经干细胞中的DNA损伤导致BMP2信号通过JAK-STAT介导的星形胶质细胞分化

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SummaryThe consequences of DNA damage generation in mammalian somatic stem cells, including neural stem cells (NSCs), are poorly understood despite their potential relevance for tissue homeostasis. Here, we show that, following ionizing radiation-induced DNA damage, NSCs enter irreversible proliferative arrest with features of cellular senescence. This is characterized by increased cytokine secretion, loss of stem cell markers, and astrocytic differentiation. We demonstrate that BMP2 is necessary to induce expression of the astrocyte marker GFAP in irradiated NSCs via a noncanonical signaling pathway engaging JAK-STAT. This is promoted by ATM and antagonized by p53. Using a SOX2-Cre reporter mouse model for cell-lineage tracing, we demonstrate irradiation-induced NSC differentiation in vivo. Furthermore, glioblastoma assays reveal that irradiation therapy affects the tumorigenic potential of cancer stem cells by ablating self-renewal and inducing astroglial differentiation.
机译:总结尽管哺乳动物体细胞(包括神经干细胞(NSC))与DNA稳态有关,但其DNA损伤产生的后果知之甚少。在这里,我们表明,电离辐射诱导的DNA损伤后,NSCs进入具有细胞衰老特征的不可逆的增殖停滞。其特点是细胞因子分泌增加,干细胞标记物丢失和星形胶质细胞分化。我们证明BMP2是必需的,通过参与JAK-STAT的非经典信号通路,在辐照的NSC中诱导星形胶质细胞标记GFAP的表达。这是由ATM促进的,与p53拮抗的。使用SOX2-Cre报告基因小鼠模型进行细胞谱系追踪,我们证明了体内辐射诱导的NSC分化。此外,胶质母细胞瘤试验显示,放射治疗通过消融自我更新和诱导星形胶质细胞分化,影响了癌症干细胞的致瘤潜力。

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