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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Disulfide linkage assignment based on reducing electrochemistry and mass spectrometry using a lead electrode
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Disulfide linkage assignment based on reducing electrochemistry and mass spectrometry using a lead electrode

机译:基于减少电化学和使用铅电极的微量光谱法的二硫键

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摘要

The study of disulfide linkage is a crucial part of the quality assessment of biopharmaceutical products because disulfide bonds stabilize the tertiary structure of proteins and maintain protein functions. Therefore, a suitable method is highly required for disulfide linkage assignment when nested disulfide bonds formed with closely spaced cysteine residues. A novel approach for disulfide linkage assignment of disulfide-rich peptides and proteins via electrochemical reduction on a lead electrode with mass spectrometry is presented in this paper. The method features partial electrochemical reduction and alkylation of peptides followed by alkylated peptide sequencing based on tandem mass spectrometry. Lead was chosen for the first time as an electrode material for disulfide bond reduction, because it has the advantages of maintenance free (only infrequent polishing needed), easy operation in DC mode, and reusability. Without any special sample preparation and any chemical reduction agents, disulfide bond in peptides can be cleaved rapidly. The new method was successfully tested with two peptides and one protein containing nested disulfide bonds.
机译:二硫化物键的研究是生物制药产品质量评估的关键部分,因为二硫键稳定蛋白质的三级结构并维持蛋白质功能。因此,当用紧密间隔的半胱氨酸残基形成的嵌套二硫键时,高硫化物键合理需要合适的方法。本文介绍了一种新的富含二硫化肽和蛋白质的二硫键连杆和蛋白质的新方法。本文提出了一种具有质谱法的铅电极的电化学还原。该方法具有基于串联质谱法的含烷基化肽测序的肽的部分电化学还原和烷基化。首次选择铅作为二硫键减少的电极材料,因为它具有免维护的优点(仅需要抛光抛光),在DC模式下易于操作和可重用性。在没有任何特殊的样品制剂和任何化学还原剂,肽中的二硫键可以快速裂解。用两种肽和一种含有巢式二硫键的蛋白质成功测试了新方法。

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