4.6 Article

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

期刊

STEM CELL REPORTS
卷 1, 期 2, 页码 123-138

出版社

CELL PRESS
DOI: 10.1016/j.stemcr.2013.06.004

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资金

  1. FIRC (Fondazione Italiana per la Ricerca sul Cancro)
  2. AIRC (Associazione Italiana per la Ricerca sul Cancro) [12971]
  3. Cariplo Foundation [2010.0818]
  4. Human Frontier Science Program [RGP 0014/2012]
  5. Marie Curie Initial Training Network CodAge, European Research Council [322726]
  6. TELETHON [GGP12059, GGP12152]
  7. AIRC [IG-5801]
  8. Italian Ministry of Health
  9. CNR (EPIGEN Flagship Project)
  10. Fondazione Cariplo [20100673]
  11. ASTIL regione Lombardia [SAL-19, Prpt FL 16874]

向作者/读者索取更多资源

The 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.

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