Nemes Peter, Goyal Samita, Vertes Akos
Department of Chemistry, W. M. Keck Institute for Proteomics Technology and Applications, George Washington University, Washington, D.C. 20052, USA.
Anal Chem. 2008 Jan 15;80(2):387-95. doi: 10.1021/ac0714359. Epub 2007 Dec 15.
Electrospray ion sources efficiently produce gas-phase ions from proteins and their noncovalent complexes. Charge-state distributions of these ions are increasingly used to gauge their conformations in the solution phase. Here we investigate how this correlation is affected by the spraying conditions at the early stage of droplet generation, prior to the ionization process. We followed the folding behavior of model proteins cytochrome c and ubiquitin and the dissociation of the noncovalent holomyoglobin complex. Spray current measurements, fast Taylor cone imaging, and mass analysis of the generated ions indicated that the protein structure experienced conformational or complexation changes upon variations in the spraying mode of the electrospray ionization source. These effects resulted in a departure from the original secondary, tertiary, and quaternary structure of proteins, possibly introducing artifacts in related studies. Therefore, if a particular gas-phase ion conformation is required or correlations with the liquid-phase conformations are studied, it is advantageous to maintain a particular spraying mode. Alternatively, spraying mode-induced changes can be utilized to alter the structure of proteins in, for example, time-resolved experiments for the study of protein folding dynamics.
电喷雾离子源能有效地从蛋白质及其非共价复合物中产生气相离子。这些离子的电荷态分布越来越多地用于衡量它们在溶液相中的构象。在此,我们研究了在电离过程之前液滴生成早期的喷雾条件如何影响这种相关性。我们跟踪了模型蛋白细胞色素c和泛素的折叠行为以及非共价全肌红蛋白复合物的解离。喷雾电流测量、快速泰勒锥成像以及对所产生离子的质量分析表明,蛋白质结构在电喷雾电离源喷雾模式变化时经历了构象或复合变化。这些效应导致蛋白质偏离其原始的二级、三级和四级结构,可能在相关研究中引入假象。因此,如果需要特定的气相离子构象或研究与液相构象的相关性,保持特定的喷雾模式是有利的。或者,喷雾模式诱导的变化可用于改变蛋白质的结构,例如在研究蛋白质折叠动力学的时间分辨实验中。