Ramos-Mejía Verónica, Escalante-Alcalde Diana, Kunath Tilo, Ramírez Laura, Gertsenstein Marina, Nagy Andras, Lomelí Hilda
Departamento de Fisiología Molecular y Genética del Desarrollo, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos, México.
Dev Dyn. 2005 Jan;232(1):180-90. doi: 10.1002/dvdy.20211.
Oct4 is a transcription factor that has been associated with pluripotency and fate determination in the initial cell lineages of mammals. On the other hand, Pou2, the ortholog of Oct4 in zebrafish, serves additional later functions during brain development acting as a differentiation switch. In mice, Oct4 is expressed throughout the neural plate of embryos until embryonic day (E) 8.0. In this study, we produced transgenic mouse embryos that ubiquitously express Oct4 and analyzed the consequences during development. We show that, at E8.0, a higher dosage of Oct4 in the neuroectoderm is sufficient to transiently alter mid-hindbrain patterning and produced a strong up-regulation of Pax2, indicating that Oct4 can regulate this gene in vivo. After E9.5, ectopic Oct4 in this region produced cell death and affected the development of the forebrain, suggesting that, at these later stages, Oct4 down-regulation is necessary for normal development to proceed. The phenotype of the transgenic embryos was also accompanied with an increase of Fgf8 expression in several of its endogenous domains, suggesting the possibility that Oct4 can participate in the regulation of expression of this ligand. Our observations support the hypothesis that Oct4, like zebrafish Pou2, has a conserved function during early brain patterning in mouse.
Oct4是一种转录因子,与哺乳动物初始细胞谱系中的多能性和命运决定相关。另一方面,Oct4在斑马鱼中的直系同源物Pou2在脑发育过程中发挥额外的后期功能,充当分化开关。在小鼠中,Oct4在胚胎的整个神经板中表达,直至胚胎第8.0天(E8.0)。在本研究中,我们构建了普遍表达Oct4的转基因小鼠胚胎,并分析了发育过程中的后果。我们发现,在E8.0时,神经外胚层中较高剂量的Oct4足以短暂改变中后脑模式,并导致Pax2强烈上调,表明Oct4在体内可调节该基因。在E9.5之后,该区域异位表达的Oct4导致细胞死亡并影响前脑发育,这表明在这些后期阶段,Oct4下调对于正常发育的进行是必要的。转基因胚胎的表型还伴随着其几个内源性结构域中Fgf8表达的增加,这表明Oct4可能参与该配体表达调控的可能性。我们的观察结果支持这样的假设,即Oct4与斑马鱼的Pou2一样,在小鼠早期脑模式形成过程中具有保守功能。