Albazerchi Amanda, Cinquin Olivier, Stern Claudio D
Department of Anatomy and Developmental Biology, University College London, London, UK.
BMC Dev Biol. 2007 Apr 2;7:25. doi: 10.1186/1471-213X-7-25.
The mouse anterior visceral endoderm (AVE) and the chick hypoblast are thought to have homologous roles in the early stages of neural induction and primitive streak formation. In mouse, many regulatory elements directing gene expression to the AVE have been identified. However, there is no technique to introduce DNA into the chick hypoblast that would enable a comparison of their activity and this has hampered a direct comparison of the regulation of gene expression in the mouse and chick extraembryonic endoderm.
Here we describe a new method to introduce DNA into the chick hypoblast, using lipofectamine-mediated transfection. We show that the hypoblast can be easily transfected and that it starts to express a luciferase reporter within 2 hours of transfection. The validity of technique is tested by following the movement and fate of hypoblast cells, which reveals their translocation to the anterior germinal crescent. We then introduce a vector containing GFP driven by the mouse VEcis-Otx2 enhancer (which directs gene expression to the mouse AVE) and we detect activity in the hypoblast.
The new technique for delivering expression constructs to the chick hypoblast will enable studies on gene activity and regulation to be performed in this tissue, which has proved difficult to transfect by electroporation. Our findings also reveal that regulatory elements that direct gene expression to the mouse AVE are active in chick hypoblast, supporting the idea that these two tissues have homologous functions.
小鼠前内脏内胚层(AVE)和鸡胚下胚层被认为在神经诱导和原条形成的早期阶段具有同源作用。在小鼠中,已鉴定出许多将基因表达导向AVE的调控元件。然而,目前尚无将DNA导入鸡胚下胚层的技术,无法对其活性进行比较,这阻碍了对小鼠和鸡胚外胚层中基因表达调控的直接比较。
在此,我们描述了一种使用脂质体介导的转染将DNA导入鸡胚下胚层的新方法。我们表明,下胚层可以很容易地被转染,并且在转染后2小时内开始表达荧光素酶报告基因。通过追踪下胚层细胞的运动和命运来测试该技术的有效性,结果显示它们会转移到前胚生发新月区。然后,我们导入一个由小鼠VEcis - Otx2增强子驱动的含有绿色荧光蛋白(GFP)的载体(该增强子将基因表达导向小鼠AVE),并在鸡胚下胚层中检测到了活性。
将表达构建体递送至鸡胚下胚层的新技术将使得在该组织中进行基因活性和调控的研究成为可能,此前该组织通过电穿孔转染一直很困难。我们的研究结果还表明,将基因表达导向小鼠AVE的调控元件在鸡胚下胚层中具有活性,支持了这两个组织具有同源功能的观点。