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Cdc42 coordinates proliferation, polarity, migration, and differentiation of small intestinal epithelial cells in mice

机译:Cdc42协调小鼠小肠上皮细胞的增殖,极性,迁移和分化

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Background & Aims Cdc42 is a Rho GTPase that regulates diverse cellular functions, including proliferation, differentiation, migration, and polarity. In the intestinal epithelium, a balance among these events maintains homeostasis. We used genetic techniques to investigate the role of Cdc42 in intestinal homeostasis and its mechanisms. Methods We disrupted Cdc42 specifically in intestinal epithelial cells by creating Cdc42flox/flox-villin- Cre+ and Cdc42flox/flox-Rosa26-CreER+ mice. We collected intestinal and other tissues, and analyzed their cellular, molecular, morphologic, and physiologic features, compared with the respective heterozygous mice. Results In all mutant mice studied, the intestinal epithelium had gross hyperplasia, crypt enlargement, microvilli inclusion, and abnormal epithelial permeability. Cdc42 deficiency resulted in defective Paneth cell differentiation and localization without affecting the differentiation of other cell lineages. In mutant intestinal crypts, proliferating stem and progenitor cells increased, compared with control mice, resulting in increased crypt depth. Cdc42 deficiency increased migration of stem and progenitor cells along the villi, caused a mild defect in the apical junction orientation, and impaired intestinal epithelium polarity, which can contribute to the observed defective intestinal permeability. The intestinal epithelium of the Cdc42flox/flox-villin-Cre+ and Cdc42flox/flox-Rosa26-CreER+ mice appeared similar to that of patients with microvillus inclusion disease. In the digestive track, loss of Cdc42 also resulted in crypt hyperplasia in the colon, but not the stomach. Conclusions Cdc42 regulates proliferation, polarity, migration, and differentiation of intestinal epithelial cells in mice and maintains intestine epithelial barrier and homeostasis. Defects in Cdc42 signaling could be associated with microvillus inclusion disease.
机译:背景与目的Cdc42是一种Rho GTP酶,可调节多种细胞功能,包括增殖,分化,迁移和极性。在肠上皮中,这些事件之间的平衡保持体内平衡。我们使用遗传技术来研究Cdc42在肠道动态平衡中的作用及其机制。方法我们通过创建Cdc42flox / flox-villin-Cre +和Cdc42flox / flox-Rosa26-CreER +小鼠来特异性破坏肠上皮细胞中的Cdc42。我们收集了肠道和其他组织,并与各自的杂合小鼠进行了比较,分析了它们的细胞,分子,形态和生理特征。结果在所有研究的突变小鼠中,肠上皮均具有明显的增生,隐窝增大,微绒毛包涵和异常的上皮通透性。 Cdc42缺乏导致Paneth细胞分化和定位缺陷,而不影响其他细胞谱系的分化。与对照小鼠相比,在突变型肠道隐窝中,增殖的干细胞和祖细胞增加,导致隐窝深度增加。 Cdc42缺乏症增加了沿绒毛的干细胞和祖细胞的迁移,导致了根尖连接方向的轻度缺陷,并损害了肠上皮的极性,这可导致观察到的肠通透性不良。 Cdc42flox / flox-villin-Cre +和Cdc42flox / flox-Rosa26-CreER +小鼠的肠上皮看起来与微绒毛包涵体疾病患者相似。在消化道中,Cdc42的丢失还会导致结肠隐窝增生,但不会导致胃隐匿增生。结论Cdc42调节小鼠肠上皮细胞的增殖,极性,迁移和分化,并维持肠上皮屏障和体内平衡。 Cdc42信号转导中的缺陷可能与微绒毛包涵体疾病有关。

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