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首页> 外文期刊>Molecular & cellular proteomics: MCP >Abundant Lysine Methylation and N-Terminal Acetylation in Sulfolobus islandicus Revealed by Bottom-Up and Top-Down Proteomics
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Abundant Lysine Methylation and N-Terminal Acetylation in Sulfolobus islandicus Revealed by Bottom-Up and Top-Down Proteomics

机译:自下而上和自上而下的蛋白质组学揭示了Sulfolobus islandicus中大量的赖氨酸甲基化和N末端乙酰化。

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Protein post-translational methylation has been reported to occur in archaea, including members of the genus Sulfolobus, but has never been characterized on a proteome-wide scale. Among important Sulfolobus proteins carrying such modification are the chromatin proteins that have been described to be methylated on lysine side chains, resembling eukaryotic histones in that aspect. To get more insight into the extent of this modification and its dynamics during the different growth steps of the thermoacidophylic archaeon S. islandicus LAL14/1, we performed a global and deep proteomic analysis using a combination of high-throughput bottom-up and top-down approaches on a single high-resolution mass spectrometer. 1,931 methylation sites on 751 proteins were found by the bottom-up analysis, with methylation sites on 526 proteins monitored throughout three cell culture growth stages: early-exponential, mid-exponential, and stationary. The top-down analysis revealed 3,978 proteoforms arising from 681 proteins, including 292 methylated proteoforms, 85 of which were comprehensively characterized. Methylated proteoforms of the five chromatin proteins (Alba1, Alba2, Cren7, Sul7d1, Sul7d2) were fully characterized by a combination of bottom-up and top-down data. The top-down analysis also revealed an increase of methylation during cell growth for two chromatin proteins, which had not been evidenced by bottom-up. These results shed new light on the ubiquitous lysine methylation throughout the S. islandicus proteome. Furthermore, we found that S. islandicus proteins are frequently acetylated at the N terminus, following the removal of the N-terminal methionine. This study highlights the great value of combining bottom-up and top-down proteomics for obtaining an unprecedented level of accuracy in detecting differentially modified intact proteoforms. The data have been deposited to the ProteomeXchange with identifiers PXD003074 and PXD004179.
机译:据报道,蛋白质翻译后甲基化发生在古细菌中,包括Sulfolobus属的成员,但从未在蛋白质组范围内进行过表征。带有这种修饰的重要的Sulfolobus蛋白中的染色质蛋白已被描述为在赖氨酸侧链上被甲基化,在这一方面类似于真核组蛋白。为了更深入地了解这种修饰的程度及其在嗜热古菌S. islandicus LAL14 / 1的不同生长步骤中的动力学,我们结合使用了高通量自下而上和自上而下的方法,进行了全局和深入的蛋白质组分析单个高分辨率质谱仪上的下降方法通过自下而上的分析发现了751个蛋白质上的1,931个甲基化位点,在整个细胞培养的三个生长阶段(早期指数,中指数和静止)监测了526个蛋白质的甲基化位点。自上而下的分析显示,有681种蛋白质产生了3,978种蛋白质,其中包括292种甲基化蛋白质,其中85种已被全面鉴定。五个染色质蛋白(Alba1,Alba2,Cren7,Sul7d1,Sul7d2)的甲基化蛋白形式通过自下而上和自上而下的数据组合得到充分表征。自上而下的分析还显示了两种染色质蛋白在细胞生长过程中甲基化的增加,但自下而上的研究尚未证明。这些结果为整个S. islandicus蛋白质组普遍存在的赖氨酸甲基化提供了新的思路。此外,我们发现,去除N-末端甲硫氨酸后,S。islandicus蛋白经常在N末端被乙酰化。这项研究凸显了将自下而上和自上而下的蛋白质组学相结合的巨大价值,可在检测差异修饰的完整蛋白质体形式方面获得前所未有的准确性。数据已使用标识符PXD003074和PXD004179存放到ProteomeXchange。

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