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Quantifying histone and RNA polymerase II post-translational modification dynamics in mother and daughter cells

机译:定量分析母细胞和子细胞中的组蛋白和RNA聚合酶II的翻译后修饰动力学

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摘要

Post-translational histone modifications are highly correlated with transcriptional activity, but the relative timing of these marks and their dynamic interplay during gene regulation remains controversial. To shed light on this problem and clarify the connections between histone modifications and transcription, we demonstrate how FabLEM (Fab-based Live Endogenous Modification labeling) can be used to simultaneously track histone H3 Lysine 9 acetylation (H3K9ac) together with RNA polymerase II Serine 2 and Serine 5 phosphorylation (RNAP2 Ser2ph/Ser5ph) in single living cells and their progeny. We provide a detailed description of the FabLEM methodology, including helpful tips for preparing and loading fluorescently conjugated antigen binding fragments (Fab) into cells for optimal results. We also introduce simple procedures for analyzing and visualizing FabLEM data, including color-coded scatterplots to track correlations between modifications through the cell cycle and temporal cross-correlation analysis to dissect modification dynamics. Using these methods, we find significant correlations that span cell generations, with a relatively strong correlation between H3K9ac and Ser5ph that appears to peak a few hours before mitosis and may reflect the bookmarking of genes for efficient re-initiation following mitosis. The techniques we have developed are broadly applicable and should help clarify how histone modifications dynamically contribute to gene regulation. (C) 2014 Elsevier Inc. All rights reserved.
机译:翻译后的组蛋白修饰与转录活性高度相关,但是这些标记的相对时间及其在基因调控过程中的动态相互作用仍然存在争议。为了阐明该问题并阐明组蛋白修饰与转录之间的联系,我们演示了如何使用FabLEM(基于Fab的活体内内源修饰标记)与RNA聚合酶II丝氨酸2一起同时追踪组蛋白H3赖氨酸9乙酰化(H3K9ac)单个活细胞及其后代中的丝氨酸5磷酸化(RNAP2 Ser2ph / Ser5ph)。我们提供了FabLEM方法的详细说明,包括有关准备荧光标记的抗原结合片段(Fab)并将其加载到细胞中以获得最佳结果的有用提示。我们还介绍了用于分析和可视化FabLEM数据的简单过程,包括使用颜色编码的散点图来跟踪通过细胞周期进行的修饰之间的相关性以及用于分析修饰动力学的时间互相关分析。使用这些方法,我们发现跨越细胞世代的显着相关性,H3K9ac和Ser5ph之间的相对强相关性似乎在有丝分裂前几个小时达到峰值,并可能反映了有丝分裂后有效重新启动的基因标记。我们开发的技术具有广泛的适用性,应有助于阐明组蛋白修饰如何动态地促进基因调控。 (C)2014 Elsevier Inc.保留所有权利。

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