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首页> 外文期刊>American Journal of Physiology >Cdx1 or Cdx2 expression activates E-cadherin-mediated cell-cell adhesion and compaction in human COLO 205 cells.
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Cdx1 or Cdx2 expression activates E-cadherin-mediated cell-cell adhesion and compaction in human COLO 205 cells.

机译:Cdx1或Cdx2的表达激活E-钙黏着蛋白介导的细胞黏附和压实在人类COLO 205细胞中。

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A mature columnar intestinal epithelium develops late in embryogenesis and is maintained throughout the life of the organism. Although the mechanisms driving intestine-specific gene expression have been well studied, those promoting the acquisition of cell-cell junctions, columnar morphogenesis, and polarization have been less studied. The Cdx homeodomain transcription factors (Cdx1 and Cdx2) regulate intestine-specific gene expression and intestinal epithelial differentiation. We report here that Cdx expression induces E-cadherin activity and cell-cell adhesion in human COLO 205 cancer cells. Within days of Cdx1 or Cdx2 expression, a new homotypic cell-cell adhesion phenotype is induced. This is a specific response to Cdx, inasmuch as a Cdx1 mutant failed to elicit the effect. Additionally, Cdx-expressing COLO 205 cells demonstrate a reduced proliferative capacity and an increase in the mRNA expression of differentiation-associated genes. Electron micrographs of these cells demonstrate induction of tight, adherens, and desmosomal junctions, as well as a columnar shape and apical microvilli. Investigations of the adhesion phenotype determined that it was Ca(2+) dependent and could be blocked by an E-cadherin-blocking antibody. However, E-cadherin protein levels and intracellular distribution were unchanged. Cdx expression restored the ability of the cell membranes to adhere and undergo compaction. We conclude that Cdx1 or Cdx2 expression is sufficient to induce an E-cadherin-dependent adhesion of COLO 205 cells. This adhesion is associated with polarization and cell-cell membrane compaction, as well as induction of a differentiated gene-expression pattern. Ascertaining the mechanism for this novel Cdx effect may yield insight into the development of mature colonic epithelium.
机译:成熟的柱状肠上皮细胞在胚胎发生后期发展,并在整个生物体的整个生命周期中得到维持。尽管驱动肠特异性基因表达的机制已得到很好的研究,但促进细胞-细胞连接,柱状形态发生和极化的机制却很少研究。 Cdx同源域转录因子(Cdx1和Cdx2)调节肠特异性基因表达和肠上皮分化。我们在这里报告,Cdx表达诱导人COLO 205癌细胞中的E-钙粘蛋白活性和细胞粘附。在Cdx1或Cdx2表达的几天之内,诱导了一个新的同型细胞-细胞粘附表型。这是对Cdx的特定反应,因为Cdx1突变体未能引起这种作用。此外,表达Cdx的COLO 205细胞显示出增殖能力降低和分化相关基因的mRNA表达增加。这些细胞的电子显微照片显示出紧密连接,粘附和桥粒连接以及柱状和顶端微绒毛的诱导。粘附表型的调查确定它是Ca(2+)依赖的,并可能被E-钙粘蛋白阻断抗体所阻断。但是,E-钙黏着蛋白水平和细胞内分布均未改变。 Cdx表达恢复了细胞膜粘附和压紧的能力。我们得出结论,Cdx1或Cdx2的表达足以诱导COLO 205细胞的E-钙粘着蛋白依赖性粘附。这种粘附与极化和细胞膜紧实以及诱导分化的基因表达模式有关。确定这种新颖的Cdx效应的机制可能会深入了解成熟的结肠上皮细胞的发育。

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