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Comparing and Combining Capillary Electrophoresis Electrospray Ionization Mass Spectrometry and Nano–Liquid Chromatography Electrospray Ionization Mass Spectrometry for the Characterization of Post-translationally Modified Histones

机译:毛细管电泳电喷雾电离质谱和纳米液相色谱电喷雾电离质谱的比较和组合用于表征翻译后修饰的组蛋白

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摘要

We present the first comprehensive capillary electrophoresis electrospray ionization mass spectrometry (CESI-MS) analysis of post-translational modifications derived from H1 and core histones. Using a capillary electrophoresis system equipped with a sheathless high-sensitivity porous sprayer and nano–liquid chromatography electrospray ionization mass spectrometry (nano-LC-ESI-MS) as two complementary techniques, we characterized H1 histones isolated from rat testis. Without any pre-separation of the perchloric acid extraction, a total of 70 different modified peptides, including 50 phosphopeptides, were identified in the rat linker histones H1.0, H1a-H1e, and H1t. Out of the 70 modified H1 histone peptides, 27 peptides could be identified with CESI-MS only, and 11 solely with LC-ESI-MS. Immobilized metal-affinity chromatography enrichment prior to MS analysis yielded a total of 55 phosphopeptides; 22 of these peptides could be identified only by CESI-MS, and 19 only by LC-ESI-MS, showing the complementarity of the two techniques. We mapped 42 H1 modification sites, including 31 phosphorylation sites, of which 8 were novel sites. For the analysis of core histones, we chose a different strategy. In a first step, the sulfuric-acid-extracted core histones were pre-separated using reverse-phase high-performance liquid chromatography. Individual rat testis core histone fractions obtained in this way were digested and analyzed via bottom-up CESI-MS. This approach yielded the identification of 42 different modification sites including acetylation (lysine and Nα-terminal); mono-, di-, and trimethylation; and phosphorylation. When we applied CESI-MS for the analysis of intact core histone subtypes from butyrate-treated mouse tumor cells, we were able to rapidly detect their degree of modification, and we found this method very useful for the separation of isobaric trimethyl and acetyl modifications. Taken together, our results highlight the need for additional techniques for the comprehensive analysis of post-translational modifications. CESI-MS is a promising new proteomics tool as demonstrated by this, the first comprehensive analysis of histone modifications, using rat testis as an example.
机译:我们提出了从H1和核心组蛋白翻译后修饰的第一个全面的毛细管电泳电喷雾电离质谱(CESI-MS)分析。使用配有无鞘高灵敏度多孔喷雾器和纳米液相色谱电喷雾电离质谱(nano-LC-ESI-MS)的毛细管电泳系统作为两种互补技术,我们表征了从大鼠睾丸中分离出的H1组蛋白。在不对高氯酸提取物进行任何预先分离的情况下,在大鼠接头组蛋白H1.0,H1a-H1e和H1t中共鉴定了70种不同的修饰肽,包括50种磷酸肽。在70种修饰的H1组蛋白肽中,仅使用CESI-MS可鉴定出27种肽,仅使用LC-ESI-MS可鉴定出11种肽。 MS分析之前,固定化金属亲和色谱富集,总共产生55个磷酸肽;这些肽中只有22种可以通过CESI-MS鉴定,而19种只能通过LC-ESI-MS鉴定,显示了这两种技术的互补性。我们绘制了42个H1修饰位点,包括31个磷酸化位点,其中8个是新位点。为了分析核心组蛋白,我们选择了不同的策略。第一步,使用反相高效液相色谱法对硫酸提取的核心组蛋白进行预分离。通过自下而上的CESI-MS消化并分析以此方式获得的各个大鼠睾丸核心组蛋白组分。该方法鉴定出包括乙酰化(赖氨酸和N α-末端)在内的42个不同的修饰位点。单,二和三甲基化;和磷酸化。当我们使用CESI-MS分析来自丁酸处理过的小鼠肿瘤细胞的完整核心组蛋白亚型时,我们能够快速检测到它们的修饰程度,我们发现这种方法对于分离同量三甲基和乙酰基修饰非常有用。综上所述,我们的结果强调了需要其他技术来全面分析翻译后修饰。 CESI-MS是有前途的新蛋白质组学工具,由此证明,这是对组蛋白修饰的首次全面分析,以大鼠睾丸为例。

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