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脊椎动物身体模式的正常形成以及在缺乏Ezh2时组织维持功能的丧失。

Normal formation of a vertebrate body plan and loss of tissue maintenance in the absence of ezh2.

作者信息

San Bilge, Chrispijn Naomi D, Wittkopp Nadine, van Heeringen Simon J, Lagendijk Anne K, Aben Marco, Bakkers Jeroen, Ketting René F, Kamminga Leonie M

机构信息

Radboud University Medical Center, Radboud Institute for Molecular Life Sciences, Nijmegen, The Netherlands.

Radboud University, Faculty of Science, Department of Molecular Biology, Radboud Institute for Molecular Life Sciences, Nijmegen, The Netherlands.

出版信息

Sci Rep. 2016 May 5;6:24658. doi: 10.1038/srep24658.

Abstract

Polycomb group (PcG) proteins are transcriptional repressors of numerous genes, many of which regulate cell cycle progression or developmental processes. We used zebrafish to study Enhancer of zeste homolog 2 (Ezh2), the PcG protein responsible for placing the transcriptional repressive H3K27me3 mark. We identified a nonsense mutant of ezh2 and generated maternal zygotic (MZ) ezh2 mutant embryos. In contrast to knockout mice for PcG proteins, MZezh2 mutant embryos gastrulate seemingly normal, but die around 2 days post fertilization displaying pleiotropic phenotypes. Expression analyses indicated that genes important for early development are not turned off properly, revealing a regulatory role for Ezh2 during zygotic gene expression. In addition, we suggest that Ezh2 regulates maternal mRNA loading of zygotes. Analyses of tissues arising later in development, such as heart, liver, and pancreas, indicated that Ezh2 is required for maintenance of differentiated cell fates. Our data imply that the primary role of Ezh2 is to maintain tissues after tissue specification. Furthermore, our work indicates that Ezh2 is essential to sustain tissue integrity and to set up proper maternal mRNA contribution, and presents a novel and powerful tool to study how PcG proteins contribute to early vertebrate development.

摘要

多梳蛋白家族(PcG)是众多基因的转录抑制因子,其中许多基因调控细胞周期进程或发育过程。我们利用斑马鱼研究果蝇zeste基因同源物2(Ezh2),这是一种负责施加转录抑制性H3K27me3标记的PcG蛋白。我们鉴定出一个ezh2的无义突变体,并构建了母源合子(MZ)ezh2突变体胚胎。与PcG蛋白基因敲除小鼠不同,MZezh2突变体胚胎的原肠胚形成看似正常,但在受精后约2天死亡,表现出多效性表型。表达分析表明,对早期发育重要的基因没有被正确关闭,这揭示了Ezh2在合子基因表达过程中的调控作用。此外,我们认为Ezh2调节合子的母源mRNA装载。对发育后期出现的组织,如心脏、肝脏和胰腺的分析表明,Ezh2是维持分化细胞命运所必需的。我们的数据表明,Ezh2的主要作用是在组织特化后维持组织。此外,我们的工作表明,Ezh2对于维持组织完整性和建立适当的母源mRNA贡献至关重要,并提供了一个新颖且强大的工具来研究PcG蛋白如何促进早期脊椎动物发育。

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