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首页> 外文期刊>Journal of proteome research >Stoichiometry, Absolute Abundance, and Localization of Proteins in the Bacillus cereus Spore Coat Insoluble Fraction Determined Using a QconCAT Approach
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Stoichiometry, Absolute Abundance, and Localization of Proteins in the Bacillus cereus Spore Coat Insoluble Fraction Determined Using a QconCAT Approach

机译:使用QConcat方法测定的芽孢杆菌腺嘌呤中蛋白质的化学计量,绝对丰度和蛋白质的定位

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摘要

Spores of Bacillus cereus pose a threat to food safety due to their high resistance to the heat or acid treatments commonly used to make food microbiologically safe. Spores may survive these treatments and later resume growth either on foodstuffs or, after ingestion, upon entering the gut they are capable of producing toxins, which cause either vomiting or diarrhea. The outer layers of the spore, the spore coat and exosporium, consist primarily of proteins that may serve as potential biomarkers for detection. The major morphogenetic protein CotE is important for correct assembly and attachment of the outermost layer, the exosporium, and by extension retention of many proteins. However, characterization of the proteins affected by deletion of CotE has been limited to electrophoretic patterns. Here we report the effect of CotE deletion on the insoluble fraction of the spore proteome through liquid chromatography–Fourier transform tandem mass spectrometry (LC–FTMS/MS) analysis. A total of 560 proteins have been identified in both mutant and wild-type spore coat isolates. A further 163 proteins were identified exclusively in wild-type spore isolates indicating that they are dependent on CotE for their association with the spore. Several of these are newly confirmed as associated with the exosporium, namely BC_2569 (BclF), BC_3345, BC_2427, BC_2878, BC_0666, BC_2984, BC_3481, and BC_2570. A total of 153 proteins were only identified in ΔCotE spore isolates. This was observed for proteins that are known or likely to be interacting with or are encased by CotE. Crucial spore proteins were quantified using a QconCAT reference standard, the first time this was used in a biochemically heterogeneous system. This allowed us to determine the absolute abundance of 21 proteins, which spanned across three orders of magnitude and together covered 5.66% ± 0.51 of the total spore weight. Applying the QconCAT methodology to the ΔCotE mutant allowed us to quantify 4.13% ± 0.14 of t
机译:由于它们对常用食物微生物学安全的热量或酸治疗的高抗性,芽孢杆菌孢子对食品安全构成了威胁。孢子可能会在这些治疗中存活,后来在食品上恢复生长,或者在摄入后,进入肠道后,它们能够产生毒素,这导致呕吐或腹泻。孢子,孢子壳和外孢子的外层主要由蛋白质组成,该蛋白质可以作为潜在的生物标志物进行检测。主要的形态发生蛋白质COTE对于最外层,exosporium的正确组装和附着,并且通过许多蛋白质的延伸保留是重要的。然而,受缺失的蛋白质影响的蛋白质的表征仅限于电泳模式。在这里,我们通过液相色谱 - 傅里叶变换串联质谱(LC-FTMS / MS)分析,报告COTE缺失对孢子蛋白质组的不溶性级分的影响。在突变体和野生型孢子壳分离物中已经鉴定了总共560个蛋白质。在野生型孢子分离物中仅鉴定了另外的163个蛋白,表明它们依赖于与孢子的关系。这些中的几种是与exosporium的新确认,即BC_2569(BCLF),BC_3345,BC_2427,BC_2878,BC_066,BC_2984,BC_3481和BC_2570相关联。在ΔCote孢子分离物中仅鉴定了总共153个蛋白质。对于已知或可能被COTE包围或被COTE包裹的蛋白质观察到这一点。使用Qconcat参考标准量化至关重要的孢子蛋白,第一次用于生物化学异质系统。这使我们可以确定21个蛋白质的绝对丰度,这在三个数量级跨越三个数量级,并一起覆盖了总孢子重量的5.66%±0.51。将QConcat方法应用于ΔCote突变体允许我们量化4.13%±0.14

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  • 来源
    《Journal of proteome research》 |2018年第2期|共15页
  • 作者单位

    Molecular Biology &

    Microbial Food Safety Mass Spectrometry of Biomacromolecules and Biosystems Data Analysis Swammerdam Institute for Life Sciences University of Amsterdam Science Park 904 1098 XH Amsterdam The Netherlands;

    Molecular Biology &

    Microbial Food Safety Mass Spectrometry of Biomacromolecules and Biosystems Data Analysis Swammerdam Institute for Life Sciences University of Amsterdam Science Park 904 1098 XH Amsterdam The Netherlands;

    Molecular Biology &

    Microbial Food Safety Mass Spectrometry of Biomacromolecules and Biosystems Data Analysis Swammerdam Institute for Life Sciences University of Amsterdam Science Park 904 1098 XH Amsterdam The Netherlands;

    Molecular Biology &

    Microbial Food Safety Mass Spectrometry of Biomacromolecules and Biosystems Data Analysis Swammerdam Institute for Life Sciences University of Amsterdam Science Park 904 1098 XH Amsterdam The Netherlands;

    Molecular Biology &

    Microbial Food Safety Mass Spectrometry of Biomacromolecules and Biosystems Data Analysis Swammerdam Institute for Life Sciences University of Amsterdam Science Park 904 1098 XH Amsterdam The Netherlands;

    Molecular Biology &

    Microbial Food Safety Mass Spectrometry of Biomacromolecules and Biosystems Data Analysis Swammerdam Institute for Life Sciences University of Amsterdam Science Park 904 1098 XH Amsterdam The Netherlands;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;蛋白质;
  • 关键词

    lt; igt; Bacillus cereuslt; /igt; CotE; QconCAT; quantitative proteomics; spore coat;

    机译:<i>芽孢杆菌豆类</ i>cote;qconcat;定量蛋白质组学;孢子涂层;

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