Kobayashi Shin, Hosoi Yusuke, Shiura Hirosuke, Yamagata Kazuo, Takahashi Saori, Fujihara Yoshitaka, Kohda Takashi, Okabe Masaru, Ishino Fumitoshi
Department of Epigenetics, Medical Research Institute, Tokyo Medical & Dental University, 1-5-45 Yushima Bunkyo-ku, Tokyo 113-8510, Japan
Department of Epigenetics, Medical Research Institute, Tokyo Medical & Dental University, 1-5-45 Yushima Bunkyo-ku, Tokyo 113-8510, Japan.
Development. 2016 Aug 15;143(16):2958-64. doi: 10.1242/dev.136739. Epub 2016 Jul 28.
Pluripotent stem cells can be classified into two distinct states, naïve and primed, which show different degrees of potency. One difficulty in stem cell research is the inability to distinguish these states in live cells. Studies on female mice have shown that reactivation of inactive X chromosomes occurs in the naïve state, while one of the X chromosomes is inactivated in the primed state. Therefore, we aimed to distinguish the two states by monitoring X chromosome reactivation. Thus far, X chromosome reactivation has been analysed using fixed cells; here, we inserted different fluorescent reporter gene cassettes (mCherry and eGFP) into each X chromosome. Using these knock-in 'Momiji' mice, we detected X chromosome reactivation accurately in live embryos, and confirmed that the pluripotent states of embryos were stable ex vivo, as represented by embryonic and epiblast stem cells in terms of X chromosome reactivation. Thus, Momiji mice provide a simple and accurate method for identifying stem cell status based on X chromosome reactivation.
多能干细胞可分为两种不同状态,即原始态和始发态,它们表现出不同程度的潜能。干细胞研究中的一个难题是无法在活细胞中区分这些状态。对雌性小鼠的研究表明,失活的X染色体在原始态会重新激活,而在始发态其中一条X染色体会失活。因此,我们旨在通过监测X染色体重新激活来区分这两种状态。到目前为止,X染色体重新激活是使用固定细胞进行分析的;在这里,我们将不同的荧光报告基因盒(mCherry和eGFP)插入到每条X染色体中。利用这些敲入的“Momiji”小鼠,我们在活胚胎中准确检测到了X染色体重新激活,并证实胚胎的多能状态在体外是稳定的,就X染色体重新激活而言,胚胎干细胞和上胚层干细胞代表了这种稳定性。因此,Momiji小鼠提供了一种基于X染色体重新激活来识别干细胞状态的简单而准确的方法。