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一碳代谢、Eph 信号与组蛋白甲基化之间的串扰促进神经干细胞分化。

Cross Talk between One-Carbon Metabolism, Eph Signaling, and Histone Methylation Promotes Neural Stem Cell Differentiation.

机构信息

Centre de Biologie du Développement (CBD), Centre de Biologie Intégrative (CBI), Université de Toulouse, CNRS, UPS, 118 route de Narbonne, 31062 Toulouse, France.

Bioinformatic Plateau I2MC, INSERM and University of Toulouse, 31432 Toulouse, France.

出版信息

Cell Rep. 2018 Jun 5;23(10):2864-2873.e7. doi: 10.1016/j.celrep.2018.05.005.

Abstract

Metabolic pathways, once seen as a mere consequence of cell states, have emerged as active players in dictating different cellular events such as proliferation, self-renewal, and differentiation. Several studies have reported a role for folate-dependent one-carbon (1C) metabolism in stem cells; however, its exact mode of action and how it interacts with other cues are largely unknown. Here, we report a link between the Eph:ephrin cell-cell communication pathway and 1C metabolism in controlling neural stem cell differentiation. Transcriptional and functional analyses following ephrin stimulation revealed alterations in folate metabolism-related genes and enzymatic activity. In vitro and in vivo data indicate that Eph-B forward signaling alters the methylation state of H3K4 by regulating 1C metabolism and locks neural stem cell in a differentiation-ready state. Our study highlights a functional link between cell-cell communication, metabolism, and epigenomic remodeling in the control of stem cell self-renewal.

摘要

代谢途径曾经被视为细胞状态的一个结果,但现在已经成为决定细胞增殖、自我更新和分化等不同细胞事件的积极参与者。一些研究报告称,叶酸依赖性一碳(1C)代谢在干细胞中发挥作用;然而,其确切的作用方式以及它与其他信号的相互作用在很大程度上尚不清楚。在这里,我们报告了 Eph:ephrin 细胞-细胞通讯途径与 1C 代谢在控制神经干细胞分化中的联系。 Ephrin 刺激后的转录和功能分析显示,叶酸代谢相关基因和酶活性发生改变。体外和体内数据表明,Eph-B 正向信号通过调节 1C 代谢改变 H3K4 的甲基化状态,使神经干细胞处于分化准备状态。我们的研究强调了细胞-细胞通讯、代谢和表观遗传重塑在控制干细胞自我更新中的功能联系。

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