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由Brd和HP1蛋白解码的核小体的蛋白质基因组学特征分析与定位

Proteogenomic characterization and mapping of nucleosomes decoded by Brd and HP1 proteins.

作者信息

LeRoy Gary, Chepelev Iouri, DiMaggio Peter A, Blanco Mario A, Zee Barry M, Zhao Keji, Garcia Benjamin A

出版信息

Genome Biol. 2012 Aug 16;13(8):R68. doi: 10.1186/gb-2012-13-8-r68.

Abstract

BACKGROUND

Histone post-translational modifications (PTMs) constitute a branch of epigenetic mechanisms that can control the expression of eukaryotic genes in a heritable manner. Recent studies have identified several PTM-binding proteins containing diverse specialized domains whose recognition of specific PTM sites leads to gene activation or repression. Here, we present a high-throughput proteogenomic platform designed to characterize the nucleosomal make-up of chromatin enriched with a set of histone PTM binding proteins known as histone PTM readers. We support our findings with gene expression data correlating to PTM distribution.

RESULTS

We isolated human mononucleosomes bound by the bromodomain-containing proteins Brd2, Brd3 and Brd4, and by the chromodomain-containing heterochromatin proteins HP1β and HP1α. Histone PTMs were quantified by mass spectrometry (ChIP-qMS), and their associated DNAs were mapped using deep sequencing. Our results reveal that Brd- and HP1-bound nucleosomes are enriched in histone PTMs consistent with actively transcribed euchromatin and silent heterochromatin, respectively. Data collected using RNA-Seq show that Brd-bound sites correlate with highly expressed genes. In particular, Brd3 and Brd4 are most enriched on nucleosomes located within HOX gene clusters, whose expression is reduced upon Brd4 depletion by short hairpin RNA.

CONCLUSIONS

Proteogenomic mapping of histone PTM readers, alongside the characterization of their local chromatin environments and transcriptional information, should prove useful for determining how histone PTMs are bound by these readers and how they contribute to distinct transcriptional states.

摘要

背景

组蛋白翻译后修饰(PTMs)构成了表观遗传机制的一个分支,能够以可遗传的方式控制真核基因的表达。最近的研究已经鉴定出几种含有不同特殊结构域的PTM结合蛋白,它们对特定PTM位点的识别会导致基因激活或抑制。在此,我们展示了一个高通量蛋白质基因组学平台,旨在表征富含一组被称为组蛋白PTM阅读器的组蛋白PTM结合蛋白的染色质的核小体组成。我们用与PTM分布相关的基因表达数据来支持我们的发现。

结果

我们分离出了与含溴结构域蛋白Brd2、Brd3和Brd4,以及与含色域结构域的异染色质蛋白HP1β和HP1α结合的人单核小体。通过质谱法(ChIP-qMS)对组蛋白PTMs进行定量,并使用深度测序对其相关DNA进行定位。我们的结果表明,与Brd和HP1结合的核小体分别富含与活跃转录的常染色质和沉默的异染色质一致的组蛋白PTMs。使用RNA-Seq收集的数据表明,与Brd结合的位点与高表达基因相关。特别是,Brd3和Brd4在HOX基因簇内的核小体上最为富集,当通过短发夹RNA耗尽Brd4时,其表达会降低。

结论

组蛋白PTM阅读器的蛋白质基因组学图谱,连同其局部染色质环境和转录信息的表征,应该有助于确定组蛋白PTMs如何被这些阅读器结合以及它们如何促成不同的转录状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c05/3491368/4f8205f3dc64/gb-2012-13-8-r68-2.jpg

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