β-catenin mediates endodermal commitment of human ES cells via distinct transactivation functions.

IF 6.1 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cell and Bioscience Pub Date : 2024-07-24 DOI:10.1186/s13578-024-01279-5
Xun Ma, Liujiang Dai, Chunlai Tan, Jiangchuan Li, Xiangjun He, Yaofeng Wang, Junyi Xue, Min Huang, Jianwei Ren, Yin Xia, Qiang Wu, Hui Zhao, Wai-Yee Chan, Bo Feng
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Abstract

Background: β-catenin, acting as the core effector of canonical Wnt signaling pathway, plays a pivotal role in controlling lineage commitment and the formation of definitive endoderm (DE) during early embryonic development. Despite extensive studies using various animal and cell models, the β-catenin-centered regulatory mechanisms underlying DE formation remain incompletely understood, partly due to the rapid and complex cell fate transitions during early differentiation.

Results: In this study, we generated new CTNNB1-/- human ES cells (hESCs) using CRISPR-based insertional gene disruption approach and systematically rescued the DE defect in these cells by introducing various truncated or mutant forms of β-catenin. Our analysis showed that a truncated β-catenin lacking both N- and C-terminal domains (ΔN148C) could robustly rescue the DE formation, whereas hyperactive β-catenin mutants with S33Y mutation or N-terminal deletion (ΔN90) had limited ability to induce DE lineage. Notably, the ΔN148C mutant exhibited significant nuclear translocation that was positively correlated with successful DE rescue. Transcriptomic analysis further uncovered that two weak β-catenin mutants lacking the C-terminal transactivation domain (CTD) activated primitive streak (PS) genes, whereas the hyperactive β-catenin mutants activated mesoderm genes.

Conclusion: Our study uncovered an unconventional regulatory function of β-catenin through weak transactivation, indicating that the levels of β-catenin activity determine the lineage bifurcation from mesendoderm into endoderm and mesoderm.

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β-catenin通过不同的转录激活功能介导人类ES细胞的内胚层承诺。
背景:β-catenin 是典型 Wnt 信号通路的核心效应因子,在控制胚胎早期发育过程中的系承和确定性内胚层(DE)的形成中起着关键作用。尽管利用各种动物和细胞模型进行了广泛的研究,但人们对以β-catenin为中心的内胚层形成调控机制仍不完全清楚,部分原因是早期分化过程中细胞命运转换迅速而复杂:在这项研究中,我们利用基于CRISPR的插入基因干扰方法产生了新的CTNNB1-/-人ES细胞(hESCs),并通过引入各种截短或突变形式的β-catenin系统性地挽救了这些细胞的DE缺陷。我们的分析表明,缺失N端和C端结构域的截短β-catenin(ΔN148C)能强有力地挽救DE的形成,而S33Y突变或N端缺失的高活性β-catenin突变体(ΔN90)诱导DE系的能力有限。值得注意的是,ΔN148C突变体表现出明显的核易位,这与成功的DE拯救呈正相关。转录组分析进一步发现,两个缺乏C端转录激活域(CTD)的弱β-catenin突变体激活了原始条纹(PS)基因,而高活性β-catenin突变体激活了中胚层基因:结论:我们的研究发现了β-catenin通过弱转录激活的非常规调控功能,表明β-catenin的活性水平决定了中胚层向内胚层和中胚层的分叉。
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来源期刊
Cell and Bioscience
Cell and Bioscience BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
10.70
自引率
0.00%
发文量
187
审稿时长
>12 weeks
期刊介绍: Cell and Bioscience, the official journal of the Society of Chinese Bioscientists in America, is an open access, peer-reviewed journal that encompasses all areas of life science research.
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