Department of Medical Biotechnology, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, 30-387 Krakow, Poland.
Int J Mol Sci. 2022 May 31;23(11):6175. doi: 10.3390/ijms23116175.
Our recent findings indicate that Nrf2 transcriptional activity is essential in maintaining the proper large intestinal structure in adult mice. Here, we aimed to verify whether Nrf2-related intestine abnormalities stemmed from the early weaning or gestational periods. Therefore, we analyzed 4-day-old pups and embryos devoid of Nrf2 transcriptional activity (tKO) and their wild-type counterparts. We found significant changes in the intestinal structure of 4-day-old Nrf2 tKO pups including a longer colon, altered crypt distribution, and enlargement of the goblet cells with a markedly higher level of mucin 2. Tracing back the origin of these alterations, we observed that they appeared as early as day 14.5 of embryonic development, independently of sex. Importantly, in this period, we observed a significant increase in the Nrf2 level and a distinctive, untimely pattern of expression of the proliferation factor Ki67. At the latest stage of embryonic development, we detected a premature drop in the differentiation factor Notch1. We suspect that intestine abnormalities in mice lacking Nrf2 transcriptional activity stem from sex-independent disturbed intestinal cell proliferation and could be further exacerbated by altered differentiation. Summing up, we identified Nrf2 transcriptional activity as an important regulator of intestinal formation. It influences the hindgut cell proliferation and differentiation at different stages of embryonic development.
我们最近的研究结果表明,Nrf2 转录活性对维持成年小鼠大肠的正常结构至关重要。在这里,我们旨在验证 Nrf2 相关的肠道异常是否源于早期断奶或妊娠期。因此,我们分析了缺乏 Nrf2 转录活性的 4 天大的幼鼠和胚胎(tKO)及其野生型对照。我们发现 4 天大的 Nrf2 tKO 幼鼠的肠道结构发生了显著变化,包括结肠变长、隐窝分布改变、杯状细胞增大,粘蛋白 2 的水平明显升高。追溯这些变化的起源,我们观察到它们早在胚胎发育的第 14.5 天就出现了,与性别无关。重要的是,在这一时期,我们观察到 Nrf2 水平显著增加,增殖因子 Ki67 的表达出现明显的提前和异常模式。在胚胎发育的最新阶段,我们检测到分化因子 Notch1 的过早下降。我们怀疑缺乏 Nrf2 转录活性的小鼠的肠道异常源于不受性别影响的肠道细胞增殖紊乱,并可能因分化改变而进一步加重。总之,我们确定 Nrf2 转录活性是肠道形成的一个重要调节因子。它在胚胎发育的不同阶段影响后肠细胞的增殖和分化。