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电声喷雾电离。一种用于在气相中生成折叠蛋白和蛋白复合物以及研究大气压下离子-分子反应的温和技术。

Electrosonic spray ionization. A gentle technique for generating folded proteins and protein complexes in the gas phase and for studying ion-molecule reactions at atmospheric pressure.

作者信息

Takáts Zoltán, Wiseman Justin M, Gologan Bogdan, Cooks R Graham

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Anal Chem. 2004 Jul 15;76(14):4050-8. doi: 10.1021/ac049848m.

Abstract

Electrosonic spray ionization (ESSI), a variant on electrospray ionization (ESI), employs a traditional micro ESI source with supersonic nebulizing gas. The high linear velocity of the nebulizing gas provides efficient pneumatic spraying of the charged liquid sample. The variable electrostatic potential can be tuned to allow efficient and gentle ionization. This ionization method is successfully applied to aqueous solutions of various proteins at neutral pH, and its performance is compared to that of the nanospray and micro ESI techniques. Evidence for efficient desolvation during ESSI is provided by the fact that the peak widths for various multiply charged protein ions are an order of magnitude narrower than those for nanospray. Narrow charge-state distributions compared to other ESI techniques are observed also; for most of the proteins studied, more than 90% of the protein ions can be accumulated in one charge state using ESSI when optimizing conditions. The fact that the abundant charge state is normally as low or lower than that recorded by ESI or nanospray indicates that folded protein ions are generated. The sensitivity of the ionization technique to high salt concentrations is comparable to that of nanospray, but ESSI is considerably less sensitive to high concentrations of organic additives such as glycerol or 2-amino-2-(hydroxymethyl)-1,3-propanediol (Tris base). Noncovalent complexes are observed in the case of myoglobin, protein kinase A/ATP complex, and other proteins. The extent of dissociation of protein ions in ESSI is comparable to or even smaller than that in the case of nanospray, emphasizing the gentle nature of the method. The unique features of ESSI are ascribed to very efficient spraying and the low internal energy supplied to the ions. Evidence is provided that the method is capable of generating fully desolvated protein ions at atmospheric pressure. This allows the technique to be used for the study of ion-molecule reactions at atmospheric pressure and examples of this are shown.

摘要

电声喷雾电离(ESSI)是电喷雾电离(ESI)的一种变体,它采用带有超音速雾化气体的传统微ESI源。雾化气体的高线速度可实现带电液体样品的高效气动喷雾。可变静电势可进行调节,以实现高效且温和的电离。这种电离方法已成功应用于中性pH下各种蛋白质的水溶液,并将其性能与纳米喷雾和微ESI技术进行了比较。ESSI过程中高效去溶剂化的证据是,各种多电荷蛋白质离子的峰宽比纳米喷雾的峰宽窄一个数量级。与其他ESI技术相比,还观察到了窄的电荷态分布;在优化条件下,使用ESSI时,对于大多数研究的蛋白质,超过90%的蛋白质离子可聚集在一种电荷态。大量电荷态通常与ESI或纳米喷雾记录的电荷态一样低或更低,这一事实表明生成了折叠的蛋白质离子。该电离技术对高盐浓度的敏感度与纳米喷雾相当,但ESSI对高浓度有机添加剂(如甘油或2-氨基-2-(羟甲基)-1,3-丙二醇(Tris碱))的敏感度要低得多。在肌红蛋白、蛋白激酶A/ATP复合物及其他蛋白质的情况下观察到了非共价复合物。ESSI中蛋白质离子的解离程度与纳米喷雾相当,甚至更小,这突出了该方法的温和性。ESSI的独特特性归因于非常高效的喷雾以及提供给离子的低内能。有证据表明该方法能够在大气压下生成完全去溶剂化的蛋白质离子。这使得该技术可用于大气压下离子-分子反应的研究,并给出了相关示例。

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