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首页> 外文期刊>Journal of proteome research >Comparative informatics analysis to evaluate site-specific protein oxidation in multidimensional LC-MS/MS data
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Comparative informatics analysis to evaluate site-specific protein oxidation in multidimensional LC-MS/MS data

机译:比较信息学分析以评估多维LC-MS / MS数据中特定于位点的蛋白质氧化

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摘要

Redox proteomics has yielded molecular insight into diseases of protein dysfunction attributable to oxidative stress, underscoring the need for robust detection of protein oxidation products. Additionally, oxidative protein surface mapping techniques utilize hydroxyl radicals to gain structural insight about solvent exposure. Interpretation of tandem mass spectral data is a critical challenge for such investigations, because reactive oxygen species target a wide breadth of amino acids. Additionally, oxidized peptides may be generated in a wide range of abundances since the reactivity of hydroxyl radicals with different amino acids spans 3 orders of magnitude. Taken together, these attributes of oxidative footprinting pose both experimental and computational challenges to detecting oxidized peptides that are naturally less abundant than their unoxidized counterparts. In this study, model proteins were oxidized electrochemically and analyzed at both the intact protein and peptide levels. A multidimensional chromatographic strategy was utilized to expand the dynamic range of oxidized peptide measurements. Peptide mass spectral data were searched by the "hybrid" software packages Inspect and Byonic, which incorporate de novo elements of spectral interpretation into a database search. This dynamic search capacity accommodates the challenge of searching for more than 40 oxidative mass shifts that can occur in a staggering variety of possible combinatorial occurrences. A prevailing set of oxidized residues was identified with this comparative approach, and evaluation of these sites was informed by solvent accessible surface area gleaned through molecular dynamics simulations. Along with increased levels of oxidation around highly reactive "hotspot" sites as expected, the enhanced sensitivity of these measurements uncovered a surprising level of oxidation on less reactive residues.
机译:氧化还原蛋白质组学已对由氧化应激引起的蛋白质功能异常疾病产生了分子认识,从而强调了对蛋白质氧化产物进行稳健检测的需要。另外,氧化蛋白表面作图技术利用羟基自由基获得有关溶剂暴露的结构见解。串联质谱数据的解释是此类研究的关键挑战,因为活性氧以广泛的氨基酸为目标。另外,由于羟基自由基与不同氨基酸的反应性跨越3个数量级,因此可以以宽范围的丰度产生氧化的肽。综上所述,氧化足迹的这些属性对检测天然比未氧化的对应肽含量低的氧化肽提出了实验和计算挑战。在这项研究中,模型蛋白被电化学氧化并在完整蛋白和肽水平上进行分析。利用多维色谱策略扩大了氧化肽测量的动态范围。肽质谱数据通过“混合”软件包Inspect和Byonic进行搜索,该软件包将光谱解释的从头元素整合到数据库搜索中。这种动态搜索能力适应了搜索超过40种氧化质量转变的挑战,而这些转变可能以惊人的多种可能的组合形式出现。用这种比较方法确定了主要的一组氧化残留物,并通过分子动力学模拟收集了溶剂可及的表面积,从而评估了这些位点。预期的是,随着高反应性“热点”部位附近氧化水平的提高,这些测量结果的灵敏度提高,发现了反应性较低的残留物上令人惊讶的氧化水平。

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