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染色质免疫沉淀-直接免疫沉淀法(ChIP-DIP)可同时绘制数百种蛋白质与DNA的结合图谱,并识别多种基因调控元件。

ChIP-DIP maps binding of hundreds of proteins to DNA simultaneously and identifies diverse gene regulatory elements.

作者信息

Perez Andrew A, Goronzy Isabel N, Blanco Mario R, Yeh Benjamin T, Guo Jimmy K, Lopes Carolina S, Ettlin Olivia, Burr Alex, Guttman Mitchell

机构信息

Division of Biology and Bioengineering, California Institute of Technology, Pasadena, CA, USA.

David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA, USA.

出版信息

Nat Genet. 2024 Dec;56(12):2827-2841. doi: 10.1038/s41588-024-02000-5. Epub 2024 Nov 25.

Abstract

Gene expression is controlled by dynamic localization of thousands of regulatory proteins to precise genomic regions. Understanding this cell type-specific process has been a longstanding goal yet remains challenging because DNA-protein mapping methods generally study one protein at a time. Here, to address this, we developed chromatin immunoprecipitation done in parallel (ChIP-DIP) to generate genome-wide maps of hundreds of diverse regulatory proteins in a single experiment. ChIP-DIP produces highly accurate maps within large pools (>160 proteins) for all classes of DNA-associated proteins, including modified histones, chromatin regulators and transcription factors and across multiple conditions simultaneously. First, we used ChIP-DIP to measure temporal chromatin dynamics in primary dendritic cells following LPS stimulation. Next, we explored quantitative combinations of histone modifications that define distinct classes of regulatory elements and characterized their functional activity in human and mouse cell lines. Overall, ChIP-DIP generates context-specific protein localization maps at consortium scale within any molecular biology laboratory and experimental system.

摘要

基因表达由数千种调控蛋白向精确基因组区域的动态定位所控制。理解这一细胞类型特异性过程一直是一个长期目标,但仍具有挑战性,因为DNA-蛋白质映射方法通常一次只研究一种蛋白质。在此,为了解决这个问题,我们开发了并行染色质免疫沉淀(ChIP-DIP)技术,以便在单个实验中生成数百种不同调控蛋白的全基因组图谱。ChIP-DIP能够在大型蛋白库(>160种蛋白质)中为所有类型的DNA相关蛋白(包括修饰组蛋白、染色质调控因子和转录因子)同时生成跨多种条件的高精度图谱。首先,我们使用ChIP-DIP来测量脂多糖刺激后原代树突状细胞中的染色质动态变化。接下来,我们探索了定义不同类型调控元件的组蛋白修饰的定量组合,并表征了它们在人类和小鼠细胞系中的功能活性。总体而言,ChIP-DIP可在任何分子生物学实验室和实验系统中,以联盟规模生成特定背景下的蛋白质定位图谱。

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