首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Effects of Forced Expression of an NH2-terminal Truncated β-Catenin on Mouse Intestinal Epithelial Homeostasis
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Effects of Forced Expression of an NH2-terminal Truncated β-Catenin on Mouse Intestinal Epithelial Homeostasis

机译:NH2-末端截短的β-连环蛋白的强迫表达对小鼠肠上皮稳态的影响

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摘要

β-Catenin functions as a downstream component of the Wnt/Wingless signal transduction pathway and as an effector of cell–cell adhesion through its association with cadherins. To explore the in vivo effects of β-catenin on proliferation, cell fate specification, adhesion, and migration in a mammalian epithelium, a human NH2-terminal truncation mutant (ΔN89β-catenin) was expressed in the 129/Sv embryonic stem cell–derived component of the small intestine of adult C57Bl/6–ROSA26↔ 129/Sv chimeric mice. ΔN89β-Catenin was chosen because mutants of this type are more stable than the wild-type protein, and phenocopy activation of the Wnt/Wingless signaling pathway in Xenopus and Drosophila. ΔN89β-Catenin had several effects. Cell division was stimulated fourfold in undifferentiated cells located in the proliferative compartment of the intestine (crypts of Lieberkühn). The proliferative response was not associated with any discernible changes in cell fate specification but was accompanied by a three- to fourfold increase in crypt apoptosis. There was a marked augmentation of E-cadherin at the adherens junctions and basolateral surfaces of 129/Sv (ΔN89β-catenin) intestinal epithelial cells and an accompanying slowing of cellular migration along crypt-villus units. 1–2% of 129/Sv (ΔN89β-catenin) villi exhibited an abnormal branched architecture. Forced expression of ΔN89β-catenin expression did not perturb the level or intracellular distribution of the tumor suppressor adenomatous polyposis coli (APC). The ability of ΔN89β-catenin to interact with normal cellular pools of APC and/or augmented pools of E-cadherin may have helped prevent the 129/Sv gut epithelium from undergoing neoplastic transformation during the 10-mo period that animals were studied. Together, these in vivo studies emphasize the importance of β-catenin in regulating normal adhesive and signaling functions within this epithelium.
机译:β-Catenin充当Wnt / Wingless信号转导途径的下游成分,并通过与钙黏着蛋白的结合作为细胞间粘附的效应子。为了探索β-连环蛋白对哺乳动物上皮细胞增殖,细胞命运规格,粘附和迁移的体内影响,在源自人类129 / Sv胚胎干细胞的NH2末端截短突变体(ΔN89β-catenin)中进行了表达。成年C57Bl / 6–ROSA2629 / 129 / Sv嵌合小鼠小肠的组成部分。之所以选择ΔN89β-Catenin,是因为这种类型的突变体比野生型蛋白更稳定,并且在非洲爪蟾和果蝇中Wnt / Wingless信号通路的表型激活。 ΔN89β-连环蛋白具有多种作用。位于肠道增殖区(Lieberkühn的隐窝)的未分化细胞的细胞分裂被刺激了四倍。增殖反应与细胞命运规格的任何可识别变化无关,但伴随着隐窝凋亡增加三至四倍。在129 / Sv(ΔN89β-catenin)肠上皮细胞的黏附连接处和基底外侧表面,E-钙粘着蛋白显着增加,并伴随着沿隐窝-绒毛单元的细胞迁移减慢。 129 / Sv(ΔN89β-catenin)绒毛中有1-2%表现出异常的分支结构。强迫表达ΔN89β-catenin的表达不会干扰肿瘤抑制性腺瘤性息肉病大肠杆菌(APC)的水平或细胞内分布。在研究动物的10个月内,ΔN89β-catenin与APC的正常细胞库和/或E-cadherin的库增加相互作用的能力可能有助于防止129 / Sv肠上皮发生肿瘤转化。总之,这些体内研究强调了β-catenin在调节上皮中正常黏附和信号传导功能方面的重要性。

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