Laboratory of Molecular Biology, Graduate School of Pharmaceutical Sciences, The University of Tokyo, Tokyo 113-0033, Japan.
Laboratory of Molecular Neurobiology, Institute for Quantitative Biosciences, The University of Tokyo, Tokyo 113-0032, Japan.
Dev Biol. 2024 Dec;516:114-121. doi: 10.1016/j.ydbio.2024.08.001. Epub 2024 Aug 3.
The lack of a widely accessible method for expressing genes of interest in wild-type embryos is a fundamental obstacle to understanding genetic regulation during embryonic development. In particular, only a few methods are available for introducing gene expression vectors into cells prior to neural tube closure, which is a period of drastic development for many tissues. In this study, we present a simple technique for injecting vectors into the amniotic cavity and allowing them to reach the ectodermal cells and the epithelia of endodermal organs of mouse embryos at E8.0 via in utero injection, using only a widely used optical fiber with an illuminator. Using this technique, retroviruses can be introduced to facilitate the labeling of cells in various tissues, including the brain, spinal cord, epidermis, and digestive and respiratory organs. We also demonstrated in utero electroporation of plasmid DNA into E7.0 and E8.0 embryos. Taking advantage of this method, we reveal the association between Ldb1 and the activity of the Neurog2 transcription factor in the mouse neocortex. This technique can aid in analyzing the roles of genes of interest during endo- and ectodermal development prior to neural tube closure.
缺乏一种广泛适用于野生型胚胎中表达目的基因的方法,是理解胚胎发育过程中遗传调控的一个基本障碍。特别是,在神经管闭合之前,只有少数几种方法可用于将基因表达载体引入细胞,而神经管闭合是许多组织剧烈发育的时期。在这项研究中,我们提出了一种简单的技术,即在 E8.0 时通过宫内注射,使用仅带有照明器的广泛使用的光纤将载体注入羊膜腔,并使其到达外胚层细胞和内胚层器官的上皮细胞。利用该技术,可以引入逆转录病毒来促进包括大脑、脊髓、表皮和消化及呼吸道等各种组织的细胞标记。我们还证明了可以在 E7.0 和 E8.0 胚胎中进行质粒 DNA 的宫内电穿孔。利用这种方法,我们揭示了 Ldb1 与小鼠新皮层中 Neurog2 转录因子活性之间的关联。该技术可有助于分析神经管闭合前内胚层和外胚层发育过程中目的基因的作用。