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首页> 外文期刊>Angewandte Chemie >Diversity in Gold Finger Structure Elucidated by Traveling-Wave Ion Mobility Mass Spectrometry
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Diversity in Gold Finger Structure Elucidated by Traveling-Wave Ion Mobility Mass Spectrometry

机译:通过行进波离子迁移率质谱法阐明金手指结构的多样性

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摘要

Traveling wave ion mobility (TWIM) mass spectrometry (MS) is a powerful method for the structural and conformational analysis of proteins and peptides, enabling the differentiation of isomeric peptides (or proteins) that have the same sequence but are modified at different residues. In this study, the TWIM-MS technique was used to separate isomeric AuI metallopeptide ions that were formed by Zn-II displacement from the parent zinc fingers (ZFs). The synthetic gold finger peptides were derived from the C-terminus of the HIV nucleocapsid p7 protein (NCp7-F2) and finger 3 of the Sp1 transcription factor (Sp1-F3). TWIM-MS enabled the acquisition of distinct product ion spectra for each isomer, clearly indicating the binding sites for the major conformers in the presence of multiple coordination possibilities. Collision crosssection measurements showed that the aurated peptide has a slightly more compact structure than the parent zinc compound NCp7-F2, which showed only one conformation.
机译:旅行波离子迁移率(TWIM)质谱(MS)是蛋白质和肽结构和构象分析的强大方法,使得具有相同序列但在不同残基的异构肽(或蛋白质)的分化。 在该研究中,TWIM-MS技术用于分离由母锌指(ZFS)形成的Zn-II位移形成的异构AUI金属肽离子。 合成的金指肽源自HIV核衣壳P7蛋白(NCP7-F2)和SP1转录因子(SP1-F3)的手指3的C-末端。 TWIM-MS使每个异构体采集不同的产物离子光谱,清楚地表明在存在多种协调可能性中的主要符合子的结合位点。 碰撞横截面测量显示,钝化肽具有比母锌化合物NCP7-F2略微更紧凑的结构,其仅显示一个构象。

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