揭示细胞周期中组蛋白H4修饰动力学的中下和化学蛋白质组学方法:组蛋白尾部肽修饰的无标记半定量,包括磷酸化和使用光反应交联剂高度敏感地捕获组蛋白PTM结合蛋白。

Q3 Physics and Astronomy Mass spectrometry Pub Date : 2015-07-02 DOI:10.5702/massspectrometry.A0039
Kazuki Yamamoto, Yoko Chikaoka, Gosuke Hayashi, Ryosuke Sakamoto, Ryuji Yamamoto, A. Sugiyama, T. Kodama, A. Okamoto, T. Kawamura
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引用次数: 12

摘要

质谱蛋白质组学是鉴定和定量组蛋白翻译后修饰(PTMs)及其结合蛋白的有效方法,特别是在甲基化和乙酰化的情况下。然而,另一个重要的PTM,磷酸化,往往很难量化,因为它很容易丢失和低效率电离。此外,磷酸化的PTM结合蛋白有时由于其可变的结合亲和力而难以识别。在这里,我们展示了我们的努力,以提高检测组蛋白H4尾肽丝氨酸1磷酸化(H4S1ph)的敏感性,并通过化学蛋白质组学方法成功鉴定了H4S1ph结合物候选物。我们的nanoLC-MS/MS系统允许半定量无标记分析细胞周期同步HeLa S3细胞的组蛋白H4 PTM动力学,包括磷酸化,甲基化和乙酰化。我们发现,在赖氨酸20 (H4K20me0)未甲基化的新生组蛋白H4上的H4S1ph丰度在s期晚期到m期达到峰值。我们还试图表征H4S1位点磷酸化对蛋白质相互作用的影响。专门合成的光亲和诱饵肽特异性捕获14-3-3蛋白作为新的H4S1ph结合伙伴,否则传统的肽拉下实验无法检测其相互作用。这是第一个分析整个组蛋白H4尾部PTM模式在细胞周期中的动态,并利用高分辨率质谱和光亲和诱饵肽鉴定低亲和力的PTM结合物的报道。
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Middle-Down and Chemical Proteomic Approaches to Reveal Histone H4 Modification Dynamics in Cell Cycle: Label-Free Semi-Quantification of Histone Tail Peptide Modifications Including Phosphorylation and Highly Sensitive Capture of Histone PTM Binding Proteins Using Photo-Reactive Crosslinkers.
Mass spectrometric proteomics is an effective approach for identifying and quantifying histone post-translational modifications (PTMs) and their binding proteins, especially in the cases of methylation and acetylation. However, another vital PTM, phosphorylation, tends to be poorly quantified because it is easily lost and inefficiently ionized. In addition, PTM binding proteins for phosphorylation are sometimes resistant to identification because of their variable binding affinities. Here, we present our efforts to improve the sensitivity of detection of histone H4 tail peptide phosphorylated at serine 1 (H4S1ph) and our successful identification of an H4S1ph binder candidate by means of a chemical proteomics approach. Our nanoLC-MS/MS system permitted semi-quantitative label-free analysis of histone H4 PTM dynamics of cell cycle-synchronized HeLa S3 cells, including phosphorylation, methylation, and acetylation. We show that H4S1ph abundance on nascent histone H4 unmethylated at lysine 20 (H4K20me0) peaks from late S-phase to M-phase. We also attempted to characterize effects of phosphorylation at H4S1 on protein-protein interactions. Specially synthesized photoaffinity bait peptides specifically captured 14-3-3 proteins as novel H4S1ph binding partners, whose interaction was otherwise undetectable by conventional peptide pull-down experiments. This is the first report that analyzes dynamics of PTM pattern on the whole histone H4 tail during cell cycle and enables the identification of PTM binders with low affinities using high-resolution mass spectrometry and photo-affinity bait peptides.
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Mass spectrometry
Mass spectrometry Physics and Astronomy-Instrumentation
CiteScore
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