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首页> 外文期刊>Journal of mass spectrometry: JMS >LC-MALDI-TOF ISD MS analysis is an effective, simple and rapid method of investigation for histones characterization: Application to EBV lymphoblastoid cell lines
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LC-MALDI-TOF ISD MS analysis is an effective, simple and rapid method of investigation for histones characterization: Application to EBV lymphoblastoid cell lines

机译:LC-MALDI-TOF ISD MS分析是对组蛋素表征的有效,简单,快速的调查方法:应用于EBV淋巴母细胞系

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摘要

This contribution is the result of our progressive engagement to develop and to apply a top-down liquid chromatography (LC) matrix-assisted laser desorption/ionization (MALDI) time-of-flight (TOF) (LC-MALDI-TOF) analysis for the histone post-translational modifications (PTMs) and variants characterization, mainly in order to provide comprehensive and fast results. The histone post-translational modifications and the differential expression of the histone variants play an essential role both in the DNA packaging mechanism in chromosomes and in the regulation of gene expression in different cellular processes, also in response to molecular agents of environmental origin. This epigenetic mechanism is widely studied in different field such as cellular differentiation, development and in the understanding of mechanisms underlying diseases. The characterization of histone PTMs has traditionally performed by antibodies-based assay, but immunological methods have significant limits, and today systems that use mass spectrometry are increasingly employed. We evaluated an in-source decay (ISD) analysis for the histone investigation on human lymphoblastoid cells, and by this approach, we were able to identify and quantify several PTMs such as the di-methylation in the lysine 20 and the acetylation in the lysine 16 in H4 and the mono-methylation, di-methylation and trimethylations at K9 of the histone H3.1. Moreover, we detected and quantified in the same H2B spectrum the prevalent H2B 1C/2E type but also the minor H2B 1D, 1M and 1B/1L/1N, 1O/2F, 1J/1K variants. In this work, we show that MALDI-ISD represents an excellent methodology to obtain global information on histone PTMs and variants from cells in culture, with rapidity and simplicity of execution. Finally, this is a useful approach to get label-free relative quantitative data of histone variants and PTMs.
机译:这一贡献是我们逐步参与开发和应用自上而下的液相色谱(LC)基质辅助激光解吸/电离(MALDI)飞行时间(TOF)(LC-MALDI-TOF)分析来进行组蛋白翻译后修饰(PTM)和变体表征的结果,主要是为了提供全面和快速的结果。组蛋白翻译后修饰和组蛋白变体的差异表达在染色体中的DNA包装机制和不同细胞过程中的基因表达调节中起着至关重要的作用,也在对环境源性分子因子的反应中起着至关重要的作用。这种表观遗传学机制在不同领域得到了广泛研究,如细胞分化、发育和疾病机制的理解。组蛋白PTM的表征传统上是通过基于抗体的分析来进行的,但免疫学方法有很大的局限性,如今使用质谱的系统越来越多。我们评估了用于人类淋巴母细胞组蛋白研究的源内衰变(ISD)分析,通过这种方法,我们能够识别和量化几种PTM,例如H4中赖氨酸20的二甲基化和赖氨酸16的乙酰化,以及组蛋白H3的K9的单甲基化、二甲基化和三甲基化。1.此外,我们在同一H2B谱中检测并量化了流行的H2B 1C/2E类型,以及次要的H2B 1D、1M和1B/1L/1N、1O/2F、1J/1K变体。在这项工作中,我们表明MALDI-ISD代表了一种极好的方法,可以快速、简单地从培养细胞中获取组蛋白PTM和变体的全局信息。最后,这是获得组蛋白变体和PTM的无标签相对定量数据的有用方法。

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