Department of Biotechnology and Biosciences, University of Milano-Bicocca, Piazza della Scienza 2, 20126 Milano, Italy.
Nucleic Acids Res. 2012 Aug;40(14):6461-76. doi: 10.1093/nar/gks295. Epub 2012 Apr 11.
The transcription factor Sox2 is essential for neural stem cells (NSC) maintenance in the hippocampus and in vitro. The transcription factor Emx2 is also critical for hippocampal development and NSC self-renewal. Searching for 'modifier' genes affecting the Sox2 deficiency phenotype in mouse, we observed that loss of one Emx2 allele substantially increased the telencephalic β-geo (LacZ) expression of a transgene driven by the 5' or 3' Sox2 enhancer. Reciprocally, Emx2 overexpression in NSC cultures inhibited the activity of the same transgene. In vivo, loss of one Emx2 allele increased Sox2 levels in the medial telencephalic wall, including the hippocampal primordium. In hypomorphic Sox2 mutants, retaining a single 'weak' Sox2 allele, Emx2 deficiency substantially rescued hippocampal radial glia stem cells and neurogenesis, indicating that Emx2 functionally interacts with Sox2 at the stem cell level. Electrophoresis mobility shift assays and transfection indicated that Emx2 represses the activities of both Sox2 enhancers. Emx2 bound to overlapping Emx2/POU-binding sites, preventing binding of the POU transcriptional activator Brn2. Additionally, Emx2 directly interacted with Brn2 without binding to DNA. These data imply that Emx2 may perform part of its functions by negatively modulating Sox2 in specific brain areas, thus controlling important aspects of NSC function in development.
转录因子 Sox2 对于海马体中的神经干细胞(NSC)维持和体外培养都是必需的。转录因子 Emx2 对于海马体的发育和 NSC 的自我更新也是至关重要的。我们在寻找影响小鼠 Sox2 缺陷表型的“修饰”基因时,观察到一个 Emx2 等位基因的缺失显著增加了由 Sox2 增强子 5'或 3'驱动的转基因在端脑β-geo(LacZ)的表达。相反,Emx2 在 NSC 培养物中的过表达抑制了相同转基因的活性。在体内,一个 Emx2 等位基因的缺失增加了中脑壁,包括海马原基中的 Sox2 水平。在功能不全的 Sox2 突变体中,保留一个“弱”的 Sox2 等位基因,Emx2 的缺失显著挽救了海马放射状胶质干细胞和神经发生,表明 Emx2 在干细胞水平上与 Sox2 具有功能相互作用。电泳迁移率变动分析和转染表明,Emx2 抑制了两个 Sox2 增强子的活性。Emx2 结合到重叠的 Emx2/POU 结合位点,阻止了 POU 转录激活因子 Brn2 的结合。此外,Emx2 直接与 Brn2 相互作用而不与 DNA 结合。这些数据表明,Emx2 可能通过在特定脑区负向调节 Sox2 来部分发挥其功能,从而控制 NSC 功能在发育中的重要方面。