活细胞分析显示,在斑马鱼合子基因组激活过程中,组蛋白H3K27乙酰化先于活性转录

Y. Sato, Lennart Hilbert, H. Oda, Yinan Wan, John M. Heddleston, T. Chew, V. Zaburdaev, Philipp J. Keller, T. Lionnet, N. Vastenhouw, H. Kimura
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引用次数: 55

摘要

组蛋白翻译后修饰是关键的基因表达调控因子,但其在发育过程中的快速动态仍然难以捕捉。我们应用一种基于fab的活内源性修饰标记技术来监测斑马鱼活胚胎合子基因组激活(ZGA)过程中组蛋白修饰水平的变化。在各种组蛋白修饰中,H3 Lys27乙酰化(H3K27ac)表现出最剧烈的变化,在64- 1k细胞期胚胎的两个核灶中积累。RNA聚合酶II的伸长形式,在c端结构域内七肽重复的Ser2位点磷酸化(RNAP2 Ser2ph),以及miR-430转录物也集中在与H3K27ac密切相关的灶中。当α-amanitin抑制转录或JQ-1抑制acetyl-reader蛋白结合时,H3K27ac灶仍然出现,但RNAP2 Ser2ph和miR-430 morpholino在灶中不集中,说明在ZGA过程中H3K27ac在主动转录之前。我们期望这里提出的方法可以应用于任何模式和非模式生物的各种发育过程。FabLEM是一种使用修饰特异性抗原结合片段的内源性标记技术,用于检测活斑马鱼胚胎合子基因组激活过程中组蛋白修饰水平和转录的变化。
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Histone H3K27 acetylation precedes active transcription during zebrafish zygotic genome activation as revealed by live-cell analysis
ABSTRACT Histone post-translational modifications are key gene expression regulators, but their rapid dynamics during development remain difficult to capture. We applied a Fab-based live endogenous modification labeling technique to monitor the changes in histone modification levels during zygotic genome activation (ZGA) in living zebrafish embryos. Among various histone modifications, H3 Lys27 acetylation (H3K27ac) exhibited most drastic changes, accumulating in two nuclear foci in the 64- to 1k-cell-stage embryos. The elongating form of RNA polymerase II, which is phosphorylated at Ser2 in heptad repeats within the C-terminal domain (RNAP2 Ser2ph), and miR-430 transcripts were also concentrated in foci closely associated with H3K27ac. When treated with α-amanitin to inhibit transcription or JQ-1 to inhibit binding of acetyl-reader proteins, H3K27ac foci still appeared but RNAP2 Ser2ph and miR-430 morpholino were not concentrated in foci, suggesting that H3K27ac precedes active transcription during ZGA. We anticipate that the method presented here could be applied to a variety of developmental processes in any model and non-model organisms. Summary: FabLEM, an endogenous labeling technique that uses modification-specific antigen-binding fragments, is used to examine changes in histone modification levels and transcription during zygotic genome activation in live zebrafish embryos.
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