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Tandem affinity purification of histones, coupled to mass spectrometry, identifies associated proteins and new sites of post-translational modification in Saccharomyces cerevisiae

机译:串联亲和纯化组蛋白,偶联至质谱法,鉴定了酿酒酵母中翻译后改性的相关蛋白质和新位点

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Histones and their post-translational modifications contribute to regulating fundamental biological processes in all eukaryotic cells. We have applied a conventional tandem affinity purification strategy to histones H3 and H4 of the yeast Saccharomyces cerevisiae. Mass spectrometry analysis of the co-purified proteins revealed multiple associated proteins, including core histones, which indicates that tagged histones may be incorporated to the nucleosome particle. Among the many other co-isolated proteins there are histone chaperones, elements of chromatin remodeling, of nucleosome assembly/disassembly, and of histone modification complexes. The his tone chaperone Rtt106p, two members of chromatin assembly FACT complex and Psh1p, an ubiquitin ligase, were the most abundant proteins obtained with both H3-TAP and H4-TAP, regardless of the cell extraction medium stringency. Our mass spectrometry analyses have also revealed numerous novel post-translational modifications, including 30 new chemical modifications in histones, mainly by ubiquitination. We have discovered not only new sites of ubiquitination but that, besides lysine, also serine and threonine residues are targets of ubiquitination on yeast histones. Our results show the standard tandem affinity purification procedure is suitable for application to yeast histones, in order to isolate and characterize histone-binding proteins and post translational modifications, avoiding the bias caused by histone purification from a chromatin-enriched fraction. (C) 2016 Elsevier B.V. All rights reserved.
机译:组蛋白及其后翻译后修改有助于调节所有真核细胞中的基本生物过程。我们已将常规的串联亲和纯化策略应用于酵母酿酒酵母的组蛋白H3和H4。共纯化蛋白质的质谱分析显示了多种相关蛋白质,包括核心组蛋白,其表明标记的组蛋白可以掺入核微粒中。在许多其他共分蛋白中,存在具有组蛋白伴侣,染色质复合的染色质的元素,核心组装/拆卸,以及组蛋白修饰复合物。他的伴随染色质综合体综合体和PSH1P的两个成员,遍在蛋白连接酶,是H3-Tap和H4抽头,无论细胞萃取介质严格如何获得最丰富的蛋白质。我们的质谱分析还揭示了许多新的翻译后修饰,包括组蛋白的30种新化学修饰,主要是泛素。我们不仅发现了泛素化的新网站,而且除赖氨酸外,也是丝氨酸和苏氨酸残留物是染色组蛋白泛素的靶标。我们的结果表明,标准串联亲和纯化方法适用于酵母组蛋白的应用,以分离和表征组蛋白结合蛋白和后翻透修饰,避免由富含染色质级分的组蛋白纯化引起的偏差。 (c)2016年Elsevier B.v.保留所有权利。

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