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斑马鱼发育程序的表观遗传标记。

Epigenetic marking of the zebrafish developmental program.

机构信息

Stem Cell Epigenetics Laboratory, Institute of Basic Medical Sciences, Faculty of Medicine, University of Oslo, Oslo, Norway.

出版信息

Curr Top Dev Biol. 2013;104:85-112. doi: 10.1016/B978-0-12-416027-9.00003-6.

Abstract

A characteristic of anamniote development is a relatively long period of embryonic cell divisions in the absence of on-going transcription. In zebrafish, this period lasts for 10 cell cycles, or ∼3-h postfertilization, after which zygotic genome activation (ZGA) takes place during the midblastula transition. How the embryo establishes transcriptional competence and how ZGA is spatially and temporally regulated have not been examined until recently. We review here recent data on the transitions in DNA methylation and posttranslational histone modifications occurring during early zebrafish development, as the embryo acquires transcriptional competence and initiates its own gene expression program. We also address models accounting for the origin of epigenetic states detected in early embryos. From these observations, a concept of epigenetic prepatterning of the embryonic gene expression program prior to the onset of ZGA is emerging. The recent data collectively start shedding light on how ZGA may be programmed and regulated.

摘要

无脊椎动物胚胎发育的一个特点是在没有持续转录的情况下,胚胎细胞的分裂时间相对较长。在斑马鱼中,这段时间持续 10 个细胞周期,或受精后约 3 小时,此时合子基因组激活 (ZGA) 发生在中囊胚转换期间。胚胎如何建立转录能力,以及 ZGA 如何在空间和时间上被调控,直到最近才得到研究。我们在这里回顾了最近关于斑马鱼早期发育过程中 DNA 甲基化和翻译后组蛋白修饰的转变的研究数据,因为胚胎获得了转录能力并启动了自己的基因表达程序。我们还讨论了解释早期胚胎中检测到的表观遗传状态起源的模型。从这些观察中,一个在 ZGA 开始之前预先设定胚胎基因表达程序的表观遗传预编程的概念正在出现。最近的数据共同揭示了 ZGA 可能是如何被编程和调控的。

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