体外培养哺乳动物细胞异色区胞嘧啶修饰水平的原位定量研究。

Maria Arroyo, Cristina M Cardoso, Florian D Hastert
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引用次数: 0

摘要

DNA的表观遗传修饰,特别是胞嘧啶,在调节基本细胞过程中起着至关重要的作用,从而调节整个细胞代谢。它们的水平在生物体和细胞发育过程中发生变化,尤其是在致病性异常(如癌症)中。相应的修饰水平通常通过专门的质谱技术或采用专用的ChIP-seq协议进行批量处理,后者提供有关修饰序列背景的信息。然而,为了在单个细胞的基础上解决修饰水平,高含量或低含量的显微镜技术仍然是首选的方法。本文提出的方案描述了一种直接的方法来检测和量化人类细胞系中不同的DNA修饰,也可以适用于其他培养的哺乳动物细胞类型。为此,结合DNA反染,对细胞进行两种不同胞嘧啶修饰的免疫染色。图像采集发生在共聚焦显微镜系统上。半自动化的分析管道有助于以快速可靠的方式收集数据。该方案相对简单、快速、经济有效。通过采用在大多数分子生物学实验室中经常建立的方法,许多研究人员能够直接在内部应用所描述的协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In situ Quantification of Cytosine Modification Levels in Heterochromatic Domains of Cultured Mammalian Cells.

In situ Quantification of Cytosine Modification Levels in Heterochromatic Domains of Cultured Mammalian Cells.

In situ Quantification of Cytosine Modification Levels in Heterochromatic Domains of Cultured Mammalian Cells.

In situ Quantification of Cytosine Modification Levels in Heterochromatic Domains of Cultured Mammalian Cells.

Epigenetic modifications of DNA, and especially cytosine, play a crucial role in regulating basic cellular processes and thereby the overall cellular metabolism. Their levels change during organismic and cellular development, but especially also in pathogenic aberrations such as cancer. Levels of respective modifications are often addressed in bulk by specialized mass spectrometry techniques or by employing dedicated ChIP-seq protocols, with the latter giving information about the sequence context of the modification. However, to address modification levels on a single cell basis, high- or low-content microscopy techniques remain the preferred methodology. The protocol presented here describes a straightforward method to detect and quantify different DNA modifications in human cell lines, which can also be adapted to other cultured mammalian cell types. To this end, cells are immunostained against two different cytosine modifications in combination with DNA counterstaining. Image acquisition takes place on a confocal microscopy system. A semi-automated analysis pipeline helps to gather data in a fast and reliable fashion. The protocol is comparatively simple, fast, and cost effective. By employing methodologies that are often well established in most molecular biology laboratories, many researchers are able to apply the described protocol straight away in-house.

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