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Enhanced Digestion Efficiency Peptide Ionization Efficiency and Sequence Resolution for Protein Hydrogen/Deuterium Exchange Monitored by FT-ICR Mass Spectrometry

机译:FT-ICR质谱仪监测蛋白质氢/氘交换的增强的消化效率肽电离效率和序列分辨率

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摘要

Solution-phase hydrogen/deuterium exchange (HDX) monitored by high-resolution FT-ICR mass spectrometry offers a rapid method to study protein conformations and protein-protein interactions. Pepsin is usually used to digest proteins in HDX and is known as lack of cleavage specificity. To improve digestion efficiency and specificity, we have optimized digestion conditions and cleavage preferences for pepsin and protease type XIII from Aspergillus saitoi. A dilution series of the proteases was used to determine the digestion efficiency for several test proteins. Protease type XIII prefers to cleave on the C-terminal end of basic amino acids and produced the highest number of fragments and the best sequence coverage compared to pepsin or protease type XVIII from Rhizhopus. Furthermore, protease type XIII exhibited much less self-digestion than pepsin, and thus is superior for HDX experiments. Many highly overlapped segments from protease type XIII and pepsin digestion, combined with high-resolution FT-ICR mass spectrometry, provide high sequence resolution (to as few as one or two amino acids) for the assignment of amide hydrogen exchange rate. Our H/D exchange results correlate well with the secondary and tertiary structure of myoglobin. Such assignments of highly overlapped fragments promise to greatly enhance the accuracy and sequence resolution for determining conformational differences resulting from ligand binding or protein-protein interactions.
机译:通过高分辨率FT-ICR质谱仪监控的溶液相氢/氘交换(HDX)提供了一种快速的方法来研究蛋白质构象和蛋白质-蛋白质相互作用。胃蛋白酶通常用于消化HDX中的蛋白质,并且被称为缺乏切割特异性。为了提高消化效率和特异性,我们优化了消化条件,并优化了人参酵母中的胃蛋白酶和XIII型蛋白酶的切割偏好。蛋白酶的稀释系列用于确定几种测试蛋白的消化效率。与来自根瘤菌的胃蛋白酶或蛋白酶XVIII相比,蛋白酶XIII倾向于在碱性氨基酸的C末端切割,并产生最高数量的片段和最佳序列覆盖率。此外,XIII型蛋白酶比胃蛋白酶显示出更少的自我消化能力,因此对于HDX实验而言更胜一筹。来自XIII型蛋白酶和胃蛋白酶消化的许多高度重叠的片段,与高分辨率FT-ICR质谱结合使用,可为酰胺氢交换速率的分配提供高序列分辨率(至少一个或两个氨基酸)。我们的H / D交换结果与肌红蛋白的二级和三级结构密切相关。高度重叠的片段的这种分配有望大大提高确定配体结合或蛋白质-蛋白质相互作用产生的构象差异的准确性和序列分辨率。

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