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低丰度胚胎样本的染色质免疫沉淀(ChIP)实验方案

Chromatin Immunoprecipitation (ChIP) Protocol for Low-abundance Embryonic Samples.

作者信息

Rehimi Rizwan, Bartusel Michaela, Solinas Francesca, Altmüller Janine, Rada-Iglesias Alvaro

机构信息

Center for Molecular Medicine Cologne (CMMC), University of Cologne.

Cologne Center for Genomics (CCG), University of Cologne.

出版信息

J Vis Exp. 2017 Aug 29(126):56186. doi: 10.3791/56186.

DOI:10.3791/56186
PMID:28872116
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5614393/
Abstract

Chromatin immunoprecipitation (ChIP) is a widely-used technique for mapping the localization of post-translationally modified histones, histone variants, transcription factors, or chromatin-modifying enzymes at a given locus or on a genome-wide scale. The combination of ChIP assays with next-generation sequencing (i.e., ChIP-Seq) is a powerful approach to globally uncover gene regulatory networks and to improve the functional annotation of genomes, especially of non-coding regulatory sequences. ChIP protocols normally require large amounts of cellular material, thus precluding the applicability of this method to investigating rare cell types or small tissue biopsies. In order to make the ChIP assay compatible with the amount of biological material that can typically be obtained in vivo during early vertebrate embryogenesis, we describe here a simplified ChIP protocol in which the number of steps required to complete the assay were reduced to minimize sample loss. This ChIP protocol has been successfully used to investigate different histone modifications in various embryonic chicken and adult mouse tissues using low to medium cell numbers (5 x 10 - 5 x 10 cells). Importantly, this protocol is compatible with ChIP-seq technology using standard library preparation methods, thus providing global epigenomic maps in highly relevant embryonic tissues.

摘要

染色质免疫沉淀(ChIP)是一种广泛应用的技术,用于在给定基因座或全基因组范围内绘制翻译后修饰的组蛋白、组蛋白变体、转录因子或染色质修饰酶的定位。ChIP分析与下一代测序(即ChIP-Seq)相结合,是一种强大的方法,可用于全面揭示基因调控网络并改善基因组的功能注释,尤其是非编码调控序列的注释。ChIP实验方案通常需要大量的细胞材料,因此排除了该方法用于研究稀有细胞类型或小组织活检样本的可能性。为了使ChIP分析能够与早期脊椎动物胚胎发育过程中体内通常可获得的生物材料量相兼容,我们在此描述一种简化的ChIP实验方案,其中完成分析所需的步骤数量被减少,以尽量减少样本损失。该ChIP实验方案已成功用于使用低至中等细胞数量(5×10⁴ - 5×10⁵个细胞)研究各种鸡胚胎和成年小鼠组织中的不同组蛋白修饰。重要的是,该实验方案与使用标准文库制备方法的ChIP-Seq技术兼容,从而能够在高度相关的胚胎组织中提供全基因组表观遗传图谱。

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本文引用的文献

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Epigenomics-Based Identification of Major Cell Identity Regulators within Heterogeneous Cell Populations.基于表观基因组学在异质细胞群体中鉴定主要细胞身份调节因子
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Allelic reprogramming of the histone modification H3K4me3 in early mammalian development.早期哺乳动物发育过程中组蛋白修饰 H3K4me3 的等位基因重编程。
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Broad histone H3K4me3 domains in mouse oocytes modulate maternal-to-zygotic transition.小鼠卵母细胞中广泛的组蛋白H3K4me3结构域调节母源-合子转变。
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