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High Throughput Characterization of Combinatorial Histone Codes

机译:组合组蛋白码的高通量表征

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摘要

We present a novel method utilizing “saltless” pH gradient weak cation exchange-hydrophilic interaction liquid chromatography directly coupled to electron transfer dissociation (ETD) mass spectrometry for the automated on-line high throughput characterization of hypermodified combinatorial histone codes. This technique, performed on a low resolution mass spectrometer, displays an improvement over existing methods with an ∼100-fold reduction in sample requirements and analysis time. The scheme presented is capable of identifying all of the major combinatorial histone codes present in a sample in a 2-h analysis. The large N-terminal histone peptides are eluted by the pH and organic solvent weak cation exchange-hydrophilic interaction liquid chromatography gradient and directly introduced via nanoelectrospray ionization into a benchtop linear quadrupole ion trap mass spectrometer equipped with ETD. Each polypeptide is sequenced, and the modification sites are identified by ETD fragmentation. The isobaric trimethyl and acetyl modifications are resolved chromatographically and confidently distinguished by the synthesis of mass spectrometric and chromatographic information. We demonstrate the utility of the method by complete characterization of human histone H3.2 and histone H4 from butyrate-treated cells, but it is generally applicable to the analysis of highly modified peptides. We find this methodology very useful for chromatographic separation of isomeric species that cannot be separated well by any other chromatographic means, leading to less complicated tandem mass spectra. The improved separation and increased sensitivity generated novel information about much less abundant forms. In this method demonstration we report over 200 H3.2 forms and 70 H4 forms, including forms not yet detected in human cells, such as the remarkably highly modified histone H3.2 K4me3K9acK14acK18acK23acK27acK36me3. Such detail provided by our proteomics platform will be essential for determining how histone modifications occur and act in combination to propagate the histone code during transcriptional events and could greatly enable sequencing of the histone component of human epigenomes.
机译:我们提出了一种新方法,利用“无盐” pH梯度弱阳离子交换-亲水相互作用液相色谱法,直接与电子传递解离(ETD)质谱联用,用于超高修饰组合组蛋白代码的自动化在线高通量表征。该技术在低分辨率质谱仪上执行,显示出对现有方法的改进,样品需求和分析时间减少了约100倍。提出的方案能够在2小时分析中识别出样品中存在的所有主要组合组蛋白代码。通过pH和有机溶剂弱阳离子交换-亲水相互作用液相色谱梯度洗脱大的N端组蛋白肽,并通过纳米电喷雾电离将其直接引入配备了ETD的台式线性四极离子阱质谱仪中。对每种多肽进行测序,并通过ETD片段鉴定修饰位点。通过质谱和色谱信息的合成,可色谱分离出同量异位的三甲基和乙酰基修饰。我们通过从丁酸处理过的细胞中完整表征人组蛋白H3.2和组蛋白H4来证明该方法的实用性,但它通常可用于高度修饰的肽的分析。我们发现该方法学对于色谱分离非常有用的异构体,这些异构体无法通过任何其他色谱方法很好地分离,从而可降低复杂的串联质谱。分离度的提高和灵敏度的提高产生了有关丰度较差形式的新颖信息。在此方法论证中,我们报告了200多种H3.2形式和70多种H4形式,包括尚未在人细胞中检测到的形式,例如显着修饰的组蛋白H3.2 K4me3K9acK14acK18acK23acK27acK36me3。我们的蛋白质组学平台提供的此类详细信息对于确定组蛋白修饰如何发生并在转录事件期间共同传播组蛋白密码的行为至关重要,并且可以极大地实现人类表观基因组组蛋白成分的测序。

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