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有限氧化对蛋白质离子迁移率和结构的影响,这些对自由基探针质谱法足迹分析很重要。

Impact of limited oxidation on protein ion mobility and structure of importance to footprinting by radical probe mass spectrometry.

机构信息

School of Molecular Bioscience, University of Sydney, Sydney, Australia.

出版信息

Rapid Commun Mass Spectrom. 2012 Feb 15;26(3):226-30. doi: 10.1002/rcm.5320.

Abstract

The effect of hydroxyl radical induced oxidation on the collision cross-sections of hen egg lysozyme and bovine ubiquitin was investigated by travelling wave ion mobility mass spectrometry for the first time. The oxidized ions of lysozyme and ubiquitin share common collision cross-sections with their unoxidized counterparts suggesting that they share common structures that were unaffected by limited oxidation. In the case of bovine ubiquitin, two distinct conformers were detected for the protein in its unoxidized and oxidized states though no change in the levels of each was observed upon oxidation. This supports the validity of Radical Probe Mass Spectrometry (RP-MS) using an electrical discharge source for protein footprinting experiments. Travelling wave ion mobility mass spectrometry has been used for the first time to confirm that limited oxidation does not have an impact on the global structure of proteins.

摘要

travelling wave 离子淌度质谱法首次被用于研究羟自由基诱导氧化对鸡卵溶菌酶和牛泛素的碰撞截面的影响。溶菌酶和泛素的氧化离子与它们未氧化的对应物具有共同的碰撞截面,这表明它们具有共同的结构,不受有限氧化的影响。在牛泛素的情况下,尽管在氧化过程中没有观察到每种蛋白质水平的变化,但在其未氧化和氧化状态下都检测到了两种不同的构象。这支持了使用放电源进行蛋白质足迹实验的自由基探针质谱法(RP-MS)的有效性。 travelling wave 离子淌度质谱法首次被用于证实有限氧化不会对蛋白质的整体结构产生影响。

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