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异位γ-连环蛋白表达部分模拟了稳定化β-连环蛋白对胚胎干细胞分化的影响。

Ectopic γ-catenin expression partially mimics the effects of stabilized β-catenin on embryonic stem cell differentiation.

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, Ontario, Canada.

出版信息

PLoS One. 2013 May 27;8(5):e65320. doi: 10.1371/journal.pone.0065320. Print 2013.

Abstract

β-catenin, an adherens junction component and key Wnt pathway effector, regulates numerous developmental processes and supports embryonic stem cell (ESC) pluripotency in specific contexts. The β-catenin homologue γ-catenin (also known as Plakoglobin) is a constituent of desmosomes and adherens junctions and may participate in Wnt signaling in certain situations. Here, we use β-catenin((+/+)) and β-catenin((-/-)) mouse embryonic stem cells (mESCs) to investigate the role of γ-catenin in Wnt signaling and mESC differentiation. Although γ-catenin protein is markedly stabilized upon inhibition or ablation of GSK-3 in wild-type (WT) mESCs, efficient silencing of its expression in these cells does not affect β-catenin/TCF target gene activation after Wnt pathway stimulation. Nonetheless, knocking down γ-catenin expression in WT mESCs appears to promote their exit from pluripotency in short-term differentiation assays. In β-catenin((-/-)) mESCs, GSK-3 inhibition does not detectably alter cytosolic γ-catenin levels and does not activate TCF target genes. Intriguingly, β-catenin/TCF target genes are induced in β-catenin((-/-)) mESCs overexpressing stabilized γ-catenin and the ability of these genes to be activated upon GSK-3 inhibition is partially restored when wild-type γ-catenin is overexpressed in these cells. This suggests that a critical threshold level of total catenin expression must be attained before there is sufficient signaling-competent γ-catenin available to respond to GSK-3 inhibition and to regulate target genes as a consequence. WT mESCs stably overexpressing γ-catenin exhibit robust Wnt pathway activation and display a block in tri-lineage differentiation that largely mimics that observed upon overexpression of β-catenin. However, β-catenin overexpression appears to be more effective than γ-catenin overexpression in sustaining the retention of markers of naïve pluripotency in cells that have been subjected to differentiation-inducing conditions. Collectively, our study reveals a function for γ-catenin in the regulation of mESC differentiation and has implications for human cancers in which γ-catenin is mutated and/or aberrantly expressed.

摘要

β-连环蛋白(β-catenin)是黏着连接的组成部分和关键的 Wnt 通路效应物,它调节许多发育过程,并在特定情况下支持胚胎干细胞(ESC)的多能性。β-连环蛋白的同源物γ-连环蛋白(也称为斑联蛋白)是桥粒和黏着连接的组成部分,在某些情况下可能参与 Wnt 信号转导。在这里,我们使用β-连环蛋白(β-catenin)(+/+)和β-连环蛋白(β-catenin)(-/-)小鼠胚胎干细胞(mESCs)来研究 γ-连环蛋白在 Wnt 信号转导和 mESC 分化中的作用。尽管在野生型(WT)mESCs 中抑制或消除 GSK-3 可显著稳定 γ-连环蛋白蛋白,但在这些细胞中有效敲低其表达并不影响 Wnt 途径刺激后β-连环蛋白/TCF 靶基因的激活。尽管如此,在短期分化实验中,敲低 WT mESCs 中的 γ-连环蛋白表达似乎会促进其多能性的退出。在β-连环蛋白(β-catenin)(-/-)mESCs 中,GSK-3 抑制不会明显改变胞质 γ-连环蛋白水平,也不会激活 TCF 靶基因。有趣的是,在过表达稳定的 γ-连环蛋白的β-连环蛋白(β-catenin)(-/-)mESCs 中诱导β-连环蛋白/TCF 靶基因,并且当在这些细胞中过表达野生型 γ-连环蛋白时,这些基因在 GSK-3 抑制下被激活的能力部分恢复。这表明,在存在足够的信号传导活性 γ-连环蛋白来响应 GSK-3 抑制并因此调节靶基因之前,必须达到关键的总连接蛋白表达的临界阈值水平。稳定过表达 γ-连环蛋白的 WT mESCs 表现出强烈的 Wnt 途径激活,并显示出三系分化的阻断,这在过表达 β-连环蛋白时基本上是相似的。然而,β-连环蛋白的过表达似乎比γ-连环蛋白的过表达更有效地维持已分化诱导条件下的幼稚多能性标记物在细胞中的保留。总之,我们的研究揭示了 γ-连环蛋白在调节 mESC 分化中的功能,并对人类癌症中突变和/或异常表达的 γ-连环蛋白具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a937/3664634/e3326e3a33bc/pone.0065320.g001.jpg

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