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Radical solutions: Principles and application of electron-based dissociation in mass spectrometry-based analysis of protein structure

机译:基于蛋白质结构的质谱分析中电子基解析的原理及应用

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'] In recent years, electron capture (ECD) and electron transfer dissociation (ETD) have emerged as two of the most useful methods in mass spectrometry-based protein analysis, evidenced by a considerable and growing body of literature. In large part, the interest in these methods is due to their ability to induce backbone fragmentation with very little disruption of noncovalent interactions which allows inference of information regarding higher order structure from the observed fragmentation behavior. Here, we review the evolution of electron-based dissociation methods, and pay particular attention to their application in "native" mass spectrometry, their mechanism, determinants of fragmentation behavior, and recent developments in available instrumentation. Although we focus on the two most widely used methodsECD and ETDwe also discuss the use of other ion/electron, ion/ion, and ion/neutral fragmentation methods, useful for interrogation of a range of classes of biomolecules in positive- and negative-ion mode, and speculate about how this exciting field might evolve in the coming years.
机译:“”近年来,电子捕获(ECD)和电子转移解离(ETD)被出现为大规模光谱蛋白质分析中的两种最有用的方法,通过相当长的文献证明了。在很大程度上,对这些方法的兴趣是由于它们诱导骨干碎片的能力,以极少的非共价相互作用的破坏,允许从观察到的碎片行为引起关于更高阶结构的信息。在这里,我们审查了基于电子的解离方法的演变,并特别注意了它们在“天然”质谱,其机制,碎片行为的决定因素以及可用仪器中最近的发展的应用。虽然我们专注于两个最广泛使用的方法,但ETDWE还讨论了其他离子/电子,离子/离子和离子/中性分段方法的使用,可用于询问正面和负离子中的一系列生物分子模式,并推测该令人兴奋的领域在未来几年中如何发展。

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