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首页> 外文期刊>Journal of proteome research >Strategy for comprehensive identification of post-translational modifications in cellular proteins, including. low abundant modifications: Application to glyceraidehyde-3-phosphate dehydrogenase
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Strategy for comprehensive identification of post-translational modifications in cellular proteins, including. low abundant modifications: Application to glyceraidehyde-3-phosphate dehydrogenase

机译:全面鉴定细胞蛋白翻译后修饰的策略,包括。低丰富的修饰:在3-磷酸甘油醛脱氢酶中的应用

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摘要

Post-translational modifications (PTMs) play key roles in the regulation of biological functions of proteins. Although some progress has been made in identifying several PTMs using existing approaches involving a combination of affinity-based enrichment and mass spectrometric analysis, comprehensive identification of PTMs remains a challenging problem in proteomics because of the dynamic complexities of PTMs in vivo and their low abundance. We describe here a strategy for rapid, efficient, and comprehensive identification of PTMs occurring in biological processes in vivo. it involves a selectively excluded mass screening analysis (SEMSA) of unmodified peptides during liquid chromatography-electrospray ionization-quadrupole-time-of-flight tandem mass spectrometry (LC-ESI-q-TOF MS/MS) through replicated runs of a purified protein on two-dimensional gel. A precursor ion list of unmodified peptides with high mass intensities was obtained during the initial run followed by exclusion of these unmodified peptides in subsequent runs. The exclusion list can grow as long as replicate runs are iteratively performed. This enables the identifications of modified peptides with precursor ions of low intensities by MS/MS sequencing. Application of this approach in combination with the PTM search algorithm MODi to GAPDH protein in vivo modified by oxidative stress provides information on multiple protein modifications (19 types of modification on 42 sites) with >92% peptide coverage and the additional potential for finding novel modifications, such as transformation of Cys to Ser. On the basis of the information of precursor ion m/z, quantitative analysis of PTM was performed for identifying molecular changes in heterogeneous protein populations. Our results show that PTMs in mammalian systems in vivo are more complicated and heterogeneous than previously reported. We believe that this strategy has significant potential because it permits systematic characterization of multiple-PTMs in functional proteomics.
机译:翻译后修饰(PTM)在调节蛋白质的生物学功能中起关键作用。尽管使用涉及基于亲和力的富集和质谱分析相结合的现有方法在鉴定几种PTM方面已经取得了一些进展,但是由于PTM体内的动态复杂性及其低丰度,对PTM进行全面鉴定仍然是蛋白质组学中一个具有挑战性的问题。我们在这里描述一种策略,用于快速,有效和全面地识别体内生物过程中发生的PTM。它涉及通过重复运行纯化蛋白在液相色谱-电喷雾电离-四极杆飞行时间串联质谱(LC-ESI-q-TOF MS / MS)期间对未修饰肽的选择性排除质谱分析(SEMSA)在二维凝胶上。在初始运行期间获得了具有高质量强度的未修饰肽的前体离子列表,随后在后续运行中排除了这些未修饰肽。只要迭代执行复制运行,排除列表就可以增加。这样可以通过MS / MS测序鉴定具有低强度前体离子的修饰肽。将该方法与PTM搜索算法MODi结合应用到体内被氧化应激修饰的GAPDH蛋白质上,可提供有关多种蛋白质修饰(42个位点上的19种修饰类型)的信息,其中肽覆盖率> 92%,并且具有发现新修饰的额外潜力,例如将Cys转换为Ser。根据前体离子m / z的信息,对PTM进行了定量分析,以鉴定异源蛋白质群体中的分子变化。我们的结果表明,体内哺乳动物系统中的PTM比以前报道的更为复杂和异构。我们认为该策略具有巨大的潜力,因为它可以对功能蛋白质组学中的多个PTM进行系统表征。

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