Department of Biochemistry, Christian-Albrechts-University of Kiel, Kiel, Germany.
PLoS One. 2010 Jul 8;5(7):e11481. doi: 10.1371/journal.pone.0011481.
Notch receptor signaling controls developmental cell fates in a cell-context dependent manner. Although Notch signaling directly regulates transcription via the RBP-J/CSL DNA binding protein, little is known about the target genes that are directly activated by Notch in the respective tissues.
METHODOLOGY/PRINCIPAL FINDINGS: To analyze how Notch signaling mediates its context dependent function(s), we utilized a Tamoxifen-inducible system to activate Notch1 in murine embryonic stem cells at different stages of mesodermal differentiation and performed global transcriptional analyses. We find that the majority of genes regulated by Notch1 are unique for the cell type and vary widely dependent on other signals. We further show that Notch1 signaling regulates expression of genes playing key roles in cell differentiation, cell cycle control and apoptosis in a context dependent manner. In addition to the known Notch1 targets of the Hes and Hey families of transcriptional repressors, Notch1 activates the expression of regulatory transcription factors such as Sox9, Pax6, Runx1, Myf5 and Id proteins that are critically involved in lineage decisions in the absence of protein synthesis.
CONCLUSION/SIGNIFICANCE: We suggest that Notch signaling determines lineage decisions and expansion of stem cells by directly activating both key lineage specific transcription factors and their repressors (Id and Hes/Hey proteins) and propose a model by which Notch signaling regulates cell fate commitment and self renewal in dependence of the intrinsic and extrinsic cellular context.
Notch 受体信号通过细胞上下文依赖的方式控制发育中的细胞命运。虽然 Notch 信号通过 RBP-J/CSL DNA 结合蛋白直接调控转录,但对于 Notch 在相应组织中直接激活的靶基因知之甚少。
方法/主要发现:为了分析 Notch 信号如何介导其上下文依赖的功能,我们利用他莫昔芬诱导系统在不同中胚层分化阶段的小鼠胚胎干细胞中激活 Notch1,并进行了全局转录分析。我们发现,Notch1 调控的大多数基因对于细胞类型是独特的,并且依赖于其他信号广泛变化。我们进一步表明,Notch1 信号通过上下文依赖的方式调节细胞分化、细胞周期控制和凋亡中关键作用的基因的表达。除了已知的 Notch1 靶基因 Hes 和 Hey 家族的转录抑制剂外,Notch1 还激活了 Sox9、Pax6、Runx1、Myf5 和 Id 蛋白等调节转录因子的表达,这些因子在没有蛋白质合成的情况下,对谱系决定至关重要。
结论/意义:我们认为 Notch 信号通过直接激活关键的谱系特异性转录因子及其抑制剂(Id 和 Hes/Hey 蛋白),决定了谱系决定和干细胞的扩增,并提出了一个模型,即 Notch 信号根据内在和外在的细胞环境,调节细胞命运的决定和自我更新。