Department of Developmental Biology, Faculty of Medicine, Shimane University, Izumo, Japan.
Congenit Anom (Kyoto). 2021 Jan;61(1):14-24. doi: 10.1111/cga.12389. Epub 2020 Aug 25.
The apico-basal (AB) polarity of epithelial cells is maintained by organized arrays of the cytoskeleton and adhesion apparatus. We previously reported that mouse embryonic esophageal epithelium exhibits interkinetic nuclear migration (INM), an AB-polarity-based regulatory mechanism of stem-cell proliferation, and suggested that the pseudostratified single columnar epithelium, a hallmark of INM, is converted to stratified squamous epithelium via rearrangement of the cytoskeleton and cell-adhesion apparatus. Here, we chronologically examined morphological changes in the cytoskeleton and adhesion apparatus in the mouse esophageal epithelium at embryonic day (E) 11.5, E13.5, E14.5, and E15.5, during which epithelial conversion has been suggested to occur. We used phalloidin to examine the apical terminal web (ATW), immunofluorescent anti-zonula occludens protein (ZO-1) antibody to reveal ZO-1, and anti-gamma tubulin antibody to detect primary cilia (PC). At E11.5, a thick ATW, apically oriented ZO-1 and apical PC were observed, indicating a pseudostratified single columnar structure. At E13.5 and E14.5, the phalloidin-staining, ZO-1, and PC distribution patterns were not apically localized, and the epithelial cells appeared to have lost the AB polarity, suggesting conversion of the epithelial structure and cessation of INM. At E15.5, light and transmission electron microscope observations revealed the ATW, ZO-1, PC, and tight junction which were localized into two-1ayers: the apical and subapical layers of the epithelium. These findings suggest that dynamic remodeling of the cytoskeleton and adhesion apparatus is involved in the conversion from pseudostratified single columnar to stratified squamous morphology and is closely related with temporal perturbation of the AB-polarity and cessation of INM.
上皮细胞的顶端-基底(AB)极性由细胞骨架和黏附装置的有序排列维持。我们之前报道过,小鼠胚胎食管上皮细胞表现出核周动力迁移(INM),这是一种基于 AB 极性的干细胞增殖调节机制,并提出假复层柱状上皮通过细胞骨架和细胞黏附装置的重排转化为复层鳞状上皮,这是 INM 的标志。在此,我们在胚胎期 11.5 天(E11.5)、13.5 天(E13.5)、14.5 天(E14.5)和 15.5 天(E15.5)时,按时间顺序检查了小鼠食管上皮中的细胞骨架和黏附装置的形态变化,在此期间,上皮细胞的转化被认为发生了。我们使用鬼笔环肽检测顶端终末网(ATW),免疫荧光抗封闭蛋白(ZO-1)抗体揭示 ZO-1,抗γ微管蛋白抗体检测初级纤毛(PC)。在 E11.5 天,观察到厚的 ATW、顶端定向的 ZO-1 和顶端 PC,表明存在假复层柱状结构。在 E13.5 天和 E14.5 天,鬼笔环肽染色、ZO-1 和 PC 的分布模式不是顶端定位的,上皮细胞似乎已经失去了 AB 极性,表明上皮结构的转化和 INM 的停止。在 E15.5 天,光镜和透射电镜观察显示 ATW、ZO-1、PC 和紧密连接被定位到上皮的两层:上皮的顶端和亚顶端层。这些发现表明,细胞骨架和黏附装置的动态重塑参与了从假复层柱状到复层鳞状形态的转化,并且与 AB 极性的时间干扰和 INM 的停止密切相关。